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WCDMA RAN
AMR Feature Parameter Description
Issue Draft A
Date 2014-01-20
HUAWEI TECHNOLOGIES CO., LTD.
7/25/2019 AMR(RAN16.0_Draft A).pdf
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Copyright © Huawei Technologies Co., Ltd. 2014. All rights reserved.
No part of this document may be reproduced or transmitted in any form or by any means without prior written
consent of Huawei Technologies Co., Ltd.
Trademarks and Permissions
and other Huawei trademarks are trademarks of Huawei Technologies Co., Ltd.
All other trademarks and trade names mentioned in this document are the property of their respective holders.
Notice
The purchased products, services and features are stipulated by the contract made between Huawei and the
customer. All or part of the products, services and features described in this document may not be within the
purchase scope or the usage scope. Unless otherwise specified in the contract, all statements, information,
and recommendations in this document are provided "AS IS" without warranties, guarantees or representations
of any kind, either express or implied.
The information in this document is subject to change without notice. Every effort has been made in the
preparation of this document to ensure accuracy of the contents, but all statements, information, and
recommendations in this document do not constitute a warranty of any kind, express or implied.
Huawei Technologies Co., Ltd.
Address: Huawei Industrial Base
Bantian, Longgang
Shenzhen 518129
People's Republic of China
Website: http://www.huawei.com
Email: support@huawei.com
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Contents
1 About This Document..................................................................................................................1
1.1 Scope..............................................................................................................................................................................1
1.2 Intended Audience..........................................................................................................................................................1
1.3 Change History...............................................................................................................................................................1
2 Overview.........................................................................................................................................4
3 Basic Principle................................................................................................................................5
3.1 History of UMTS Voice Services...................................................................................................................................5
3.2 AMR Signal Processing..................................................................................................................................................6
3.3 Source Controlled Rate...................................................................................................................................................7
4 Radio Bearers..................................................................................................................................8
4.1 Radio Bearer Scheme.....................................................................................................................................................8
4.2 Admission Control on AMR Services............................................................................................................................9
4.3 AMR Rate Set.................................................................................................................................................................9
4.4 Initial Bit Rate..............................................................................................................................................................11
4.5 Controllable Rate Set....................................................................................................................................................12
5 AMRC............................................................................................................................................15
5.1 Overview......................................................................................................................................................................15
5.2 AMRC Based on LDR..................................................................................................................................................15
5.3 AMRC Based on TFO/TrFO........................................................................................................................................16
5.3.1 Overview...................................................................................................................................................................16
5.3.2 Description.................................................................................................................................................................17
5.4 AMRC Based on Link Stability....................................................................................................................................18
5.5 AMRC for Blacklisted Users........................................................................................................................................18
5.5.1 Identification of Blacklisted Users............................................................................................................................18
5.5.2 Special Processing for Blacklisted Users..................................................................................................................19
5.6 AMRC Signaling..........................................................................................................................................................19
5.7 optimized AMRC.........................................................................................................................................................20
5.8 AMRC Rate Readjustment...........................................................................................................................................20
6 AMR Link Stability Control......................................................................................................22
6.1 Basic Principle..............................................................................................................................................................22
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6.1.1 Overview...................................................................................................................................................................22
6.1.2 Uplink Stability Control............................................................................................................................................23
6.1.3 Downlink Stability Control.......................................................................................................................................23
6.2 Link Stability Measurement.........................................................................................................................................24
6.3 AMRC Based on Link Stability....................................................................................................................................29
7 Network Impact...........................................................................................................................31
7.1 WRFD-010613 AMR-WB (Adaptive Multi Rate Wide Band)....................................................................................31
7.2 WRFD-011600 TFO/TrFO...........................................................................................................................................33
7.3 WRFD-020701 AMR/WB-AMR Speech Rates Control..............................................................................................34
8 Engineering Guidelines.............................................................................................................37
8.1 WRFD-010613 AMR-WB (Adaptive Multi Rate Wide Band)....................................................................................37
8.1.1 When to Use This Feature.........................................................................................................................................37
8.1.2 Information to Be Collected......................................................................................................................................37
8.1.3 Network Planning......................................................................................................................................................38
8.1.4 Feature Deployment..................................................................................................................................................38
8.1.4.1 Requir ements..........................................................................................................................................................38
8.1.4.2 Data Preparation.....................................................................................................................................................38
8.1.4.3 Precautions..............................................................................................................................................................38
8.1.4.4 Activation...............................................................................................................................................................39
8.1.4.4.1 Using MML Commands......................................................................................................................................39
8.1.4.4.2 MML Command Examples.................................................................................................................................39
8.1.4.4.3 Using the CME....................................................................................................................................................398.1.4.5 Activation Observation...........................................................................................................................................41
8.1.4.6 Deactivation............................................................................................................................................................41
8.1.4.6.1 Using MML Commands......................................................................................................................................41
8.1.4.6.2 MML Command Examples.................................................................................................................................41
8.1.4.6.3 Using the CME....................................................................................................................................................41
8.1.5 Parameter Optimization.............................................................................................................................................41
8.1.6 Troubleshooting.........................................................................................................................................................42
8.2 WRFD-011600 TFO/TrFO...........................................................................................................................................42
8.2.1 When to Use This Feature.........................................................................................................................................42
8.2.2 Information to Be Collected......................................................................................................................................42
8.2.3 Network Planning......................................................................................................................................................42
8.2.4 Feature Deployment..................................................................................................................................................42
8.2.4.1 Requir ements..........................................................................................................................................................42
8.2.4.2 Data Preparation.....................................................................................................................................................42
8.2.4.3 Activation...............................................................................................................................................................42
8.2.4.3.1 Using MML Commands......................................................................................................................................42
8.2.4.3.2 MML Command Examples.................................................................................................................................43
8.2.4.3.3 Using the CME....................................................................................................................................................43
8.2.4.4 Activation Observation...........................................................................................................................................43
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8.2.4.5 Deactivation............................................................................................................................................................44
8.2.4.5.1 Using MML Commands......................................................................................................................................44
8.2.4.5.2 MML Command Examples.................................................................................................................................44
8.2.4.5.3 Using the CME....................................................................................................................................................44
8.2.5 Parameter Optimization.............................................................................................................................................45
8.2.6 Troubleshooting.........................................................................................................................................................45
8.3 WRFD-020701 AMR/WB-AMR Speech Rates Control..............................................................................................45
8.3.1 When to Use This Feature.........................................................................................................................................45
8.3.2 Information to Be Collected......................................................................................................................................45
8.3.3 Network Planning......................................................................................................................................................45
8.3.4 Feature Deployment..................................................................................................................................................45
8.3.4.1 Requirements..........................................................................................................................................................45
8.3.4.2 Data Preparation.....................................................................................................................................................46
8.3.4.3 Activation...............................................................................................................................................................46
8.3.4.3.1 Using MML Commands......................................................................................................................................46
8.3.4.3.2 MML Command Examples.................................................................................................................................47
8.3.4.3.3 Using the CME....................................................................................................................................................47
8.3.4.4 Activation Observation...........................................................................................................................................51
8.3.4.5 Deactivation............................................................................................................................................................53
8.3.4.5.1 Using MML Commands......................................................................................................................................53
8.3.4.5.2 MML Command Examples.................................................................................................................................53
8.3.4.5.3 Using the CME....................................................................................................................................................53
8.3.5 Parameter Optimization.............................................................................................................................................54
8.3.6 Troubleshooting.........................................................................................................................................................55
9 Parameters.....................................................................................................................................56
10 Counters....................................................................................................................................402
11 Glossary.....................................................................................................................................449
12 Reference Documents.............................................................................................................450
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1 About This Document
1.1 Scope
This document describes AMR, including its technical principles, network impact, and
engineering guidelines. This document covers the following features:
l WRFD-010613 AMR-WB (Adaptive Multi Rate Wide Band)
l WRFD-011600 TFO/TrFO
l WRFD-020701 AMR/WB-AMR Speech Rates Control
1.2 Intended Audience
This document is intended for personnel who:
l Need to understand the features described herein
l Work with Huawei products
1.3 Change History
This section provides information about the changes in different document versions. There aretwo types of changes, which are defined as follows:
l Feature change
Changes in features of a specific product version
l Editorial change
Changes in wording or addition of information that was not described in the earlier version
Draft A (2014-01-20)
Compared with Issue 04 (2013-12-30) of RAN15.0, Draft A (2014-01-20) of RAN16.0 includes
the following changes.
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ChangeType
Change Description ParameterChange
Feature
change
Added the application of the following functions for
combined services: AMRC based on LDR and uplink AMRC based on link stability. For details, see section
5.2 AMRC Based on LDR and section 6.3 AMRC
Based on Link Stability.
Added the
followingswitches under
the CsSwitch
(BSC6900,
BSC6910)
parameter:
CS_COMB_NA
MRC_SWITC
H
CS_COMB_W
AMRC_SWITC
H
Added the descriptions of the function of AMR-WB SF
reconfiguration based on LDR triggered by code
congestion. For details, see section 5.2 AMRC Based on
LDR and section 8.3.4 Feature Deployment.
Added the
following switch
under the
CsSwitch
(BSC6900,
BSC6910)
parameter:
CS_WAMR_SF
_RECONF_SW
ITCH
Added the descriptions of the
CS_AMR_TRFO_CMP_SWITCH . For details, see
section 5.3.2 Description and section 8.3.4 Feature
Deployment.
Added the
following switch
under the
CsSwitch
(BSC6900,
BSC6910)
parameter:
CS_AMR_TRF
O_CMP_SWIT
CH
Added the AMRC Rate Readjustment function. For
details about this function, see section 5.6 AMRC
Signaling and section 8.3.4 Feature Deployment.
Added the
following switch
under the
ProcessSwitch
(BSC6900,
BSC6910)
parameter:
IUUP_RC_REP
EAT_SWITCH
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ChangeType
Change Description ParameterChange
Editorial
change
Added the descriptions of optimization for AMRC-
related parameters. For details, see section 8.3.5Parameter Optimization.
Added the
following switchunder the
CsSwitch
(BSC6900,
BSC6910)
parameter:
CS_LDR_AMR
_RATEUP_OP
T_SWITCH
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2 Overview
AMR services are 3G speech services. AMR services are classified into AMR-NB services and
AMR-WB (WRFD-010613 AMR-WB (Adaptive Multi Rate Wide Band)) services.
NOTE
The AMR-WB service is license-controlled.
l If the AMR-WB license is not activated on an RNC, ensure that AMR-WB is not enabled for this RNC
on the CS core network (CN) side. Otherwise, neither AMR-NB services nor emergency calls can be
set up for UEs supporting AMR-WB.
l If the AMR-WB license is enabled on an RNC, ensure that AMR-WB is enabled for this RNC on the
CS CN side. Otherwise, the AMR-WB service cannot be set up.
This document presents the following information about AMR services:
l Basic Principle
l Radio Bearer
l AMRC
l AMR Link Stability Control
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3 Basic Principle
3.1 History of UMTS Voice Services
UMTS voice services consist of the AMR service (CS voice) and the VoIP service (PS voice).
The traditional voice bearer scheme is voice over DCH. With the development of technologies
and the enhancement of bearer efficiency, HSPA/HSPA+ is being increasingly used for voice
bearer.
Table 3-1 describes the development process of UMTS voice bearer technologies.
Table 3-1 Development process of UMTS voice bearer technologies
Protocol Release CS Voice PS Voice
3GPP Release 99 AMR-NB over DCH -
3GPP Release 4 TFO, TrFO, and soft switch -
3GPP Release 5 AMR-WB over DCH VoIP over DCH (IMS-based)
3GPP Release 6 - VoIP over HSPA
3GPP Release 7 - VoIP over HSPA+ (CPC)
3GPP Release 8 AMR over HSPA/HSPA+ -
Table 3-2 compares different voice bearer technologies.
Table 3-2 Comparison between voice bearer technologies
Item AMR overDCH
AMR overHSPA/HSPA+
VoIP overHSPA/HSPA+
VoIP overDCH
Radio bearer R99 DCH HSPA/HSPA+ HSPA/HSPA+ DCH
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Item AMR overDCH
AMR overHSPA/HSPA+
VoIP overHSPA/HSPA+
VoIP overDCH
RNC ratecontrol AMRC AMRC None None
RLC TM UM UM UM
CN CS CS PS+IMS PS+IMS
Terminal Ordinary
terminal
l Supports
HSPA/
HSPA+.
l Supports
AMR over
HSPA/HSPA+.
l Supports
HSPA/
HSPA+.
l Supports the
VoIP client.
Supports the
VoIP client.
3.2 AMR Signal Processing
AMR services are 3G voice services. AMR services are classified into AMR-NB services and
AMR-WB services. The voice sampling frequency and bandwidth of AMR-WB services are
higher than those of AMR-NB services, as shown in Figure 3-1.. Therefore, compared with
AMR-NB services, AMR-WB services provide better speech qualityvoice quality.
Figure 3-1 Difference between AMR-NB services and AMR-WB services
Figure 3-2 shows the AMR signal process. Analog voice is sampled by A/D (analog to digit)
and coded by PCM (PCM voice). The AMR coding is used to convert the PCM voice to AMR
voice. The AMR modes and rates are controlled by the AMR Control (AMRC) function.
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Figure 3-2 AMR signal processing
3.3 Source Controlled RateDuring a normal telephone conversation, the participants alternate so that, on the average, each
direction of transmission is occupied about 50% of the time. Source controlled rate (SCR) is a
mode of operation where the speech encoder encodes speech frames containing only background
noise with a lower bit-rate than normally used for encoding speech. A network may adapt its
transmission scheme to take advantage of the varying bit-rate.
Voice Activity Detector (VAD) on the sender is used to check the activities of speech. If speech
is inactive, the sender transmits SID frame to the RX side. SID frame contains the evaluation of
the background acoustic noise on the sender. When receiving the SID frame, the receiver
generates a noise similar to the sender, called comfort noise, during periods when the
transmission is switched off.
In addition to these functions, if the parameters arriving at the receiver are detected to be seriously
corrupted by errors, the speech or comfort noise must be generated from substituted data in order
to avoid seriously annoying effects for the listener.
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4 Radio Bearers
4.1 Radio Bearer Scheme
The data of AMR services is classified into three classes: A, B, and C. The classes stand for
different significance. A is most important, B is in the next place and C is in the last place.
Therefore, AMR RABs consist of three sub-flows: A, B, and C. A has a higher priority than B
and C.
The CN transmits three sub-flows to the RNC, and the RNC sets up three RBs by using TM
RLC to carry the sub-flows. Each sub-flow is carried on one DCH.
RAB 0# and RAB 1# are used for CS AMR.
Index CNDomain TrafficClass SourceStatisticsDescriptor
MaximumBit Rate(MBR)(kbit/s)
Direction
0 CS Conversatio
nal
Speech 12.2 Downlink/
Uplink
1 CS Conversatio
nal
Speech 23.85 Downlink/
Uplink
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AMR also can be carried on HSPA (downlink HS-DSCH and uplink E-DCH). For details,
see Voice over HSPA Feature Parameter Description.
You need to set CSVoiceChlType(BSC6900,BSC6910) to DCH to make sure that AMR is
carried on DCH.
4.2 Admission Control on AMR Services
AMR services have a higher admission priority than data services.
For details about the admission control rules for AMR services, see Call Admission Control
Feature Parameter Description.
4.3 AMR Rate Set
The codec rates of AMR services can be adjusted based on the change of radio environments to
achieve better voice quality.
Voice has a period close to 20 ms so the voice is sampled and processed every 20 ms. AMR rate
is calculated by the following equation:
AMR rate = (A + B + C)/20 ms, where A, B, and C stand for the size of voice data for each sub-
flow. The following is an example:
12.2 kbit/s = (81+103+60) bits/20 ms
AMR-NB Rate Set
For AMR-NB services, the voice bandwidth is from 300 Hz to 3400 Hz and the sampling
frequency is 8 kHz. Table 4-1 lists the rates.
Table 4-1 AMR-NB sub-flows
Rate(kbit /s)
4.75 5.15 5.9 6.7 7.4 7.95 10.2 12.2 SID NoData(0)
Sub-
flow
A(bit)
42 49 55 58 61 75 65 81 39 0
Sub-
flow
B
(bit)
53 54 63 76 87 84 99 103 0 0
Sub-
flow
C
(bit)
0 0 0 0 0 0 40 60 0 0
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3GPP TS 28.062 provides 16 recommended configurations of the AMR-NB rate set on the
wireless network. The recommended configurations are corresponded to configurations 0 to 15
listed in Table 4-2.
Table 4-2 Recommended configurations of the AMR-NB rate set
Rate (kbit/s) 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
12.2 (1) 1 1 1
10.2 1 1 1
7.95 1 1 1
7.40 1 1 1 1
6.70 1 1 1 1 1 1
5.90 1 1 1 1 1 1 1 1 1 1
5.15
4.75 1 1 1 1 1 1 1 1 1 1
OM F F F F F F F F F F F A F A F A
In Table 4-2, 1 indicates that a rate set contains the rate. (1) indicates that the rate is optional in
a rate set. Take the number 1 recommended configuration as an example, the rate set can be{12.2 kbit/s, 7.4 kbit/s, 5.9 kbit/s, 4.75 kbit/s} or {7.4 kbit/s, 5.9 kbit/s, 4.75 kbit/s}. A indicates
that the Tandem Free Operation/Transcoder Free Operation (TFO/TrFO) mechanism is allowed
to automatically optimize and modify the rate set during TFO/TrFO negotiation. F indicates that
the optimization and modification are not allowed. Usually, F is used.
Recommended configuration 1 or 7 is usually used on live networks with optimal performance
and communication considered.
AMR-WB Rate Set
For AMR-WB services, the voice bandwidth is from 50 Hz to 7000 Hz and the samplingfrequency is 16 kHz. Table 4-3 lists the rates.
Table 4-3 AMR-WB sub-flows
Rate(kbit/s)
23.85
23.05
19.85
18.25
15.85
14.25
12.65
8.85 6.6 SID NoData (0)
Sub-
flow
A
(bit)
72 72 72 72 72 72 72 64 54 40 0
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Rate(kbit/s)
23.85
23.05
19.85
18.25
15.85
14.25
12.65
8.85 6.6 SID NoData (0)
Sub-flow
B
(bit)
405 389 325 293 245 213 181 113 78 0 0
Sub-
flow
C
(bit)
0 0 0 0 0 0 0 0 0 0 0
To simplify the AMR-WB's applications on the wireless network, 3GPP TS 26.103 defines fiveconfigurable rates and provides six recommended configurations of the AMR-WB rate set. The
recommended configurations are corresponded to configurations 0 to 5 listed in Table 4-4.
Table 4-4 Recommended configurations of the AMR-WB rate set
Rate(kbit/s)
0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
23.85 1 1
15.85 1 1
12.65 1 1 1 1 1 1
8.85 1 1 1 1 1 1
6.6 1 1 1 1 1 1
OM F A F A F A
In Table 4-4, 1 indicates that a rate set contains the rate. Take the number 1 recommended
configuration as an example, the rate set can be {6.6 kbit/s, 8.85 kbit/s, 12.65 kbit/s}. A indicates
that the TFO/TrFO mechanism is allowed to automatically optimize and modify the rate set
during TFO/TrFO negotiation. F indicates that the optimization and modification are not
allowed. Usually, F is used.
Recommended configuration 1 or 4 is usually used on live networks with optimal performance
and communication considered.
4.4 Initial Bit Rate
In the uplink, the Initial Bit Rate (IBR) is not only the maximum permissible rate in the initial
communication phase, but also the maximum rate that the uplink AMRC function can select. It
is equal to the maximum rate in the UL controllable rate set. In the downlink, the IBR is the
maximum permissible rate in the initial communication phase.
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The RNC calculates IBR in the following way:
l When the AMRC function is enabled:
– If the cell load is normal, then IBR is calculated by the following formula:
IBR = max {GBR, IBRmax}
– If the cell is in the basic congestion state, then IBR equals to GBR. For details about
basic congestion, see Load Control Feature Parameter Description.
l When the AMRC function is disabled, IBR is calculated by the following formula:
IBR = max {GBR, IBRmax}
IBRmax is the maximum IBR and is calculated in the following way:
l If the Iu UP version is 1, then IBRmax is calculated by the following formula:
IBRmax = min (MBR RAB, MBR LMT)
where– MBR RAB is the maximum rate in the rate set in the RAB assignment message.
– MBR LMT is the maximum rate configured based on user priority (ADD
UCELLAMRC and ADD UCELLAMRCWB)
l If the Iu UP version is 2, then IBRmax equals to MBR RAB without considering MBR LMT.
The minimum IBR cannot be lower than the GBR. If the maximum rate of user priority-based
services is lower than the GBR, the IBR is set to the GBR.
4.5 Controllable Rate Set
A controllable rate set consists of the AMR codec rates that are contained in the supported rate
set and are higher than or equal to the GBR. The rates in this set can be selected by the AMRC
function for rate adjustment. The supported rate set consists of all the AMR codec rates that can
be used for service transport.
For example:
Assume that the supported rate set is {0, SID, 4.75 kbit/s, 7.95 kbit/s, 12.2 kbit/s} and the GBR
is 4.75 kbit/s. f the Iu UP version is 2, the downlink controllable rate set is {4.75 kbit/s, 7.95
kbit/s, 12.2 kbit/s}. If the Iu UP version is 1, the downlink controllable rate set is {4.75 kbit/s,
12.2 kbit/s}. The uplink controllable rate set is {4.75 kbit/s, 12.2 kbit/s}. SID stands for Silence
Indicator and is used to maintain a session when there is no data.
The controllable AMR rate set is valid only when the AMRC function is enabled.
The following table lists the controllable AMR rate set for AMR-NB services.
LinkDirection
Iu UPVersion
Controllable Rate Set for AMR-NB Services
Downlink 2 {GBR, ..., MBR RAB}
{GBR, ..., MBR RAB} consists of all the rates that are carried in
the RAB assignment message and are higher than or equal to the
GBR.
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LinkDirection
Iu UPVersion
Controllable Rate Set for AMR-NB Services
Downlink 1 {GBR, IBR}
Uplink 2 If IBR = GBR, then the controllable rate set = {GBR}.
Otherwise:
If the CS_AMRC_NB_ULRATESET_EXP_SWITCH check
box under the CsSwitch(BSC6900,BSC6910) parameter in the
MML command SET UCORRMALGOSWITCH is deselected,
then the controllable rate set = {IBR, GBR}.
NOTE
The CS_AMRC_NB_ULRATESET_EXP_SWITCH check box is
used to determine whether the AMR-NB services can be adjusted level by
level through AMRC. By default, This check box is deselected.
If the CS_AMRC_NB_ULRATESET_EXP_SWITCH check box is selected, then, the controllable rate set is determined using
the following rules:
Assume that there is a rate set named set A. Set A includes the
rates in the supported rate set excluding SID and 0. Then, the
controllable rate set is calculated in the following way:
l If the number of rates in the set A is smaller than or equal to
4, the controllable rate set is the rates in the set A.
l If the number of rates in the set A is larger than 4, rates other
than 4.75 kbit/s, 5.9 kbit/s, 7.4 kbit/s, 7.95 kbit/s, and 12.2 kbit/
s are excluded from set A and the remaining rates in the set A
form set B.Then:
If the number of rates in the set B is smaller than or equal to
4, the set B form the controllable rate set.
If the number of rates in the set B is larger than 4, 7.95 kbit/s
is excluded from the set B and the remaining rates in the set B
form the controllable rate set.
Controlling the number of rates in the controllable rate set to be
within 4 aims to ensure rapid rate adjustment by AMRC for AMR-
NB services.
Uplink 1 {GBR, IBR}
If IBR = GBR, then {GBR, IBR} = {GBR}.
The following table lists the controllable AMR rate set for AMR-WB services.
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LinkDirection
Iu UPVersion
Controllable Rate Set for AMR-WB Services
DL 2 {GBR, ..., MBR RAB}
{GBR, ..., MBR RAB} consists of all the rates that are carried inthe RAB assignment message and are higher than or equal to the
GBR.
DL 1 {GBR, IBR}
This subset consists of rates lower than or equal to the MBR that
is configured in the SET UAMRCWB command based on the
user priority.
Uplink - If IBR = GBR, then the controllable rate set = {GBR}.
Otherwise:
If theCS_AMRC_WB_RATE_ADJUST_GRADUALLY_SWITC
H check box under the CsSwitch(BSC6900,BSC6910) parameter
in the MML command SET UCORRMALGOSWITCH is
deselected, then the controllable rate set = {IBR, GBR}.
NOTE
The CS_AMRC_WB_RATE_ADJUST_GRADUALLY_SWITCH
check box is used to determine whether the AMR-WB services can be
adjusted level by level through AMRC. By default, This check box is
deselected.
If the
CS_AMRC_WB_RATE_ADJUST_GRADUALLY_SWITCH check box is selected, then, the controllable rate set is
determined using the following rules:
Assume that there is a rate set named set A. Set A includes the
rates in the supported rate set excluding SID and 0. Then, the
controllable rate set is calculated in the following way:
l If the number of rates in the set A is smaller than or equal to
4, the controllable rate set is the rates in the set A.
l If the number of rates in the set A is larger than 4, rates other
than 6.60 kbit/s, 8.85 kbit/s, 12.65 kbit/s, 15.85 kbit/s, and
23.85 kbit/s are excluded from set A and the remaining rates
in the set A form set B. Then:If the number of rates in the set B is smaller than or equal to
4, the set B form the controllable rate set.
If the number of rates in the set B is larger than 4, 15.85 kbit/
s and 23.85 kbit/s are excluded from the set B and the
remaining rates in the set B form the controllable rate set.
Controlling the number of rates in the controllable rate set to be
within 4 aims to ensure rapid rate adjustment by AMRC for AMR-
WB services.
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5 AMRC
5.1 Overview
The RNC uses the AMRC function to adjust AMR codec rates (WRFD-020701 AMR/WB-AMR
Speech Rates Control). It dynamically adjusts the codec rates based on the link stability and cell
congestion state. The uplink AMRC and downlink AMRC functions work independently.
l AMRC Based on LDR
l AMRC Based on TFO/TrFO
l AMRC Based on Link Stability (see chapter 6 AMR Link Stability Control)
The AMRC function is controlled by the CS_AMRC_SWITCH switch under the CsSwitch(BSC6900,BSC6910) parameter.
There are more specific switches:
l The CS_AMRC_WB_CMP_SWITCH switch under the C sSwitch(BSC6900,BSC6910)
parameter in the MML command SET UCORRMALGOSWITCH: determines whether
the AMRC function is enabled for AMR-WB services.
l The CS_AMRC_NB_CMP_SWITCH switch under the CsSwitch(BSC6900,BSC6910)
parameter in the MML command SET UCORRMALGOSWITCH: determines whether
the AMRC function is enabled for AMR-NB services.
When the AMRC function is enabled, the RNC can adjust the AMR codec rates based on
different conditions. If the AMR codec rate is adjusted to a lower one, the AMR quality will
become worse. The different AMR codec rates have different impacts on MOS (Mean Opinion
Score). For details, see 3GPP TR 26.975.
5.2 AMRC Based on LDR
AMRC based on LDR is one task of Load Reshuffling (LDR). For details about the LDR
function, see the Load Control Feature Parameter Description.
When the cell enters the uplink or downlink LDR state (also called basic congestion state)
triggered by power or Iub bandwidth resource, the maximum permissible UL or DL AMR rate
is decreased to the GBR in the uplink or downlink controllable rate set.
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When the cell leaves the LDR state, the rate is not increased.
To enable the AMRC based on LDR, do as follows:
l Turn on the LDR switch. The following is an example:
MOD UCELLALGOSWITCH: CellId=4500,
NBMLdcAlgoSwitch=UL_UU_LDR-1&DL_UU_LDR-1;
l Select the AMRC as one of the actions in LDR state. The following is an example:
MOD UCELLLDR: CellId=4500, DlLdrFirstAction=AMRRateRed,
DlLdrSecondAction=NoAct;
AMR-WB services consume more code resources than AMR-NB services. For example,
23.85 kbit/s AMR-WB services consume codes under SF64 and 12.2 kbit/s AMR-NB
services consume codes under SF128. When the volume of AMR-WB service increases in
a network, the number of times that a cell enters the LDR state triggered by code congestion
increases. If code congestion occurs in a cell, the rate of 23.85 kbit/s AMR-WB services is
decreased to 12.65 kbit/s or the GBR and the consumed codes are transferred from SF64to SF128 through the RB reconfiguration process. However, when the cell leaves the code
congestion state, the rate of AMR-WB services is not increased.
To enable the function of AMR-WB SF reconfiguration based on LDR triggered by code
congestion, do as follows:
– Turn on the LDR switch.
Run the RNC MML command MOD UCELLALGOSWITCH and select the
CELL_CODE_LDR check box under the NBMLdcAlgoSwitch(BSC6900,BSC6910)
parameter.
– Select the AMR-WB SF reconfiguration as one of LDR actions.
Run the RNC MML command MOD UCELLLDR and set the DlLdrFirstAction(BSC6900,BSC6910) parameter to WAMRSfReconfiguration .
Run the RNC MML command SET UCORRMALGOSWITCH and select the
CS_WAMR_SF_RECONF_SWITCH check box under the CsSwitch
(BSC6900,BSC6910) parameter.
AMRC based on LDR also applies to 1 AMR+1 PS BE combined services. To enable
AMRC based on LDR for combined services, do as follows:
– For 1 AMR-NB+1 PS BE combined services, run the RNC MML command SET
UCORRMALGOSWITCH and select the CS_COMB_NAMRC_SWITCH check
box under the CsSwitch(BSC6900,BSC6910) parameter.
–For 1 AMR-WB+1 PS BE combined services, run the RNC MML command SETUCORRMALGOSWITCH and select the CS_COMB_WAMRC_SWITCH check
box under the CsSwitch(BSC6900,BSC6910) parameter.
5.3 AMRC Based on TFO/TrFO
5.3.1 Overview
The Tandem Free Operation/Transcoder Free Operation (TFO/TrFO) function is used to prevent
tandeming codecs in the traditional UE-UE calling procedure. The corresponding feature is
WRFD-011600 TFO/TrFO.
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As shown in Figure 5-1, the traditional procedure includes two coding operations and two
decoding operations, leading to deterioration in voice quality. The deterioration is more
noticeable when the speech codecs are operating at low rates.
Figure 5-1 Traditional speech codec tandem operation
If TFO/TrFO is enabled and the calling and called parties use the same voice coding rate,
compressed speech frames may be directly transmitted between the two parties, without the need
for the second speech coding/decoding. This improves voice quality.
For TFO, there is a pair of codecs on the transmission path in the network, but the two codecs
are bypassed.
For TrFO, there is no codec on the transmission path in the network.
For details about TFO and TrFO, see 3GPP TS 28.062.
5.3.2 Description
AMRC supports the adjustment of the maximum permissible AMR codec rate that is triggered
by the peer RNC.
For AMR services, the local downlink is the peer uplink. If the local is going to adjust the
downlink, the peer should adjust the uplink. Before TFO/TrFO is applied, the codec in the CN
close to the UE performs the rate adaption. After TFO/TrFO is applied, the codec does not need
to be configured or is bypassed.
The AMRC based on TFO/TrFO works as follows:
1. When the downlink codec rate needs to be adjusted (triggered by LDR or link stability control),
the local RNC sends an Iu UP Rate Control Request message to the peer RNC through the CN.
2. The peer RNC determines whether to adjust the uplink codec rate according to the AMRC
function.
l If the rate needs to be decreased according to the message, the peer RNC decreases the
uplink codec rate.
l If the rate needs to be increased according to the message, the peer RNC increases the
uplink codec rate only when the following conditions are met:
l The RNC needs to increase the uplink rate according to the UE's transmit power.
l The cell uplink load is in normal state.
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l The Iub resources are sufficient.
If the peer RNC determines not to adjust the rate, it returns a rate adjustment failed or succeeded
message to the local RNC.
lIf a rate adjustment failed message is returned, the local RNC may repeatedly sends the IuUP Rate Control Request message.
l If a rate adjustment succeeded message is returned, data transmission will not be affected
because the peer RNC does not increase the rate and the local RNC can parse low-rate data
packets.
The CS_AMR_TRFO_CMP_SWITCH under the CsSwitch(BSC6900,BSC6910) parameter
in the SET UCORRMALGOSWITCH command controls whether the peer RNC returns a rate
adjustment failed or succeeded message. If this switch is set to on, a rate adjustment succeeded
message is returned. If this switch is set to off, a rate adjustment failed message is returned. It
is recommended that this switch be set to on when the AMRC based on TFO/TrFO function is
enabled.
If the peer RNC determines to adjust the rate, it sends a TFC CONTROL message to the UE and
adjusts the uplink rate to a rate that is closest to or equal to but not higher than the rate requested
by the local end.
To enable the AMRC based on TFO/TrFO, select the CS_AMRC_SWITCH and
CS_IUUP_V2_SUPPORT_SWITCH check boxes under the CsSwitch(BSC6900,BSC6910)
parameter.
5.4 AMRC Based on Link Stability
For details, see chapter 6 AMR Link Stability Control.
5.5 AMRC for Blacklisted Users
Some UEs are incompatible with AMRC and experience no audio or static when AMRC is
enabled. Such UEs need to be added to the blacklist for AMRC.
5.5.1 Identification of Blacklisted Users
After obtaining the international mobile equipment identity (IMEI) of a UE, the RNC extracts
the type allocation code (TAC) from the IMEI. The RNC then checks whether the TAC is
included in the TAC list configured by the RNC MML command ADD UIMEITAC.
If the TAC is included in the TAC list, the RNC determines that the UE is a blacklisted user and
performs special processing for the UE. If the TAC is not included in the TAC list, the RNC
determines that the UE is not a blacklisted user.
For WB-AMR, AMRC takes effect for blacklisted users under the following conditions:
l CS_AMRC_SWITCH in the CsSwitch(BSC6900,BSC6910) parameter is turned on.
l CS_AMRC_WB_CMP_SWITCH in the CsSwitch(BSC6900,BSC6910) parameter is
turned off.
l The AMRC blacklist function is enabled.
For NB-AMR, AMRC takes effect for blacklisted users under the following conditions:
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l CS_AMRC_SWITCH in the CsSwitch(BSC6900,BSC6910) parameter is turned on.
l CS_AMRC_NB_CMP_SWITCH in the CsSwitch(BSC6900,BSC6910) parameter is
turned off.
l The AMRC blacklist function is enabled.
The AMRC blacklist function is enabled only when TAC_FUNC(BSC6900,BSC6910) is set to
Special_User_Enhance and SPECUSER_AMR_RATE_CHG_SWITCH in the
SpecUserFunctionSwitch2(BSC6900,BSC6910) parameter is turned on.
5.5.2 Special Processing for Blacklisted Users
After obtaining the IMEI of a UE, the RNC determines the model of the UE. If the UE model
is listed in the AMRC blacklist, the RNC performs the following processing for the UE:
l The RNC does not perform any special processing on the downlink rate of the UE. The
RNC restricts the uplink rate of the UE to {0, SID, GBR}. That is, the local RNC can
perform neither LDR-based AMRC nor link stability-based AMRC.
l The RNC always responds with a rate adjustment complete message to the rate adjustment
request sent by the peer RNC.
NOTE
The processing is the same for Iu UP version 1 and Iu UP version 2.
5.6 AMRC Signaling
The RNC sends a TFC Control message to the UE to adjust the AMR uplink rate.
Figure 5-2 Signaling for uplink AMRC rate adjustment
The RNC sends an Iu UP Rate Control Request message to the CN to request to adjust the
downlink rate of the UE. After the CN adjusted the downlink rate, the CN responds with an Iu
UP Rate Control Response message to the RNC.
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Figure 5-3 Signaling for downlink AMRC rate adjustment
5.7 optimized AMRC
According to section 6.2.2 "Immediate Rate Control" in 3GPP TS 25.953 V4.0.0, if AMRC is performed before the SRNS relocation of a UE processing AMR services, the immediate rate
control procedure is triggered when the SRNS relocation is complete. The CN is notified of the
maximum AMR through the immediate rate control procedure. To support this function specified
in 3GPP, you need to enable the optimized AMRC function by selecting the
CS_TRFO_MUTI_UL_RATE_CONTROL_SWITCH check box under the CsSwitch
(BSC6900,BSC6910) parameter in the SET UCORRMALGOSWITCH command. If this
function is enabled, the RNC initiates an AMRC procedure after receiving the Relocation Detect
message according to 3GPP specifications. If this function is disabled, the immediate rate control
procedure is delayed. As a result, one-way audio may occur for a short period of time. In networks
enabled with the AMRC function, it is recommended that the optimized AMRC function be
enabled.
According to section 6.5.3.2A "Frequent Rate Control Procedures" in GPP TS 25.415 V11.0.0,
if the CN frequently sends the IUUP RATE CONTROL message to the RNC, the RNC
determines the rate based on the last received message. To support this function specified in
3GPP, you need to enable the optimized AMRC function by selecting the
CS_IMMEDIATE_RATE_CONTROL_OPT_SWITCH check box under the CsSwitch
(BSC6900,BSC6910) parameter in the SET UCORRMALGOSWITCH command. If this
function is enabled, the RNC implements the optimized AMRC procedure according to 3GPP
specifications. If this function is disabled, the RNC processes the IUUP RATE CONTROL
messages in sequence. If the RNC is processing a received IUUP RATE CONTROL message
when a new one is sent to the RNC, the new one will be discarded. In networks enabled with
the AMRC function, it is recommended that the optimized AMRC function be enabled.
5.8 AMRC Rate Readjustment
After the downlink AMRC rate adjustment procedure is complete, the RNC starts to detect the
downlink data rate on the Iu user plane. If the detected data rate is not the same as the required
rate in the subsequent data transmission, the RNC restarts a downlink AMRC rate adjustment
procedure until data packets are transmitted at the required rate. This function ensures that the
AMRC algorithm takes effect correctly and reduces the occurrences of one-way audio caused
by inconsistent data rates. However, checking the voice frame in each packet on the Iu user plane
slightly increases the CPU load.
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To enable this function, select the IUUP_RC_REPEAT_SWITCH check box under the
ProcessSwitch(BSC6900,BSC6910) parameter in the SET UDPUCFGDATA command.
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6 AMR Link Stability Control
6.1 Basic Principle
6.1.1 Overview
When the UE's uplink transmit power or the downlink TCP of the DPDCH exceeds the threshold,
the link stability control function for AMR voice services triggers a rate decrease, an inter-
frequency handover, or an inter-RAT handover, to guarantee the stability of links. These actions
are controlled by individual switches but are performed in this fixed sequence: first rate decrease
and then inter-frequency handover or inter-RAT handover if necessary. When the
AMRQosPerform(BSC6900,BSC6910) parameter in the MML command SET UQOSACT isset to YES, the QoS control algorithm is used for AMR services. When the parameter is set to
NO, the QoS control algorithm is not used for AMR services.
Table 6-1 shows the basic principle of AMRC based on link stability.
Table 6-1 AMRC based on link stability
Direction Event AMRC Handover
Downlink DCH Ea - Start measurement
for handover
Eb - Stop measurement
for handover
E1 Decrease the rate Start measurement
for handover
E2 Stop decreasing the
rate
Stop measurement
for handover
F2 Stop increasing the
rate
-
F1 Increase the rate -
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Direction Event AMRC Handover
Uplink DCH 6D or 6A1 Decrease the rate Start measurement
for handover
6B1 Stop decreasing the
rate
Stop measurement
for handover
6A2 Stop increasing the
rate
-
6B2 Increase the rate -
6.1.2 Uplink Stability Control
Uplink stability control is described as follows:
l When AMRC is enabled:
– The RNC can adjust the rate according to events received.
– If the current rate is the GBR and the RNC receives a report on event 6A1 or 6D or the
uplink AMRC timer expires, the RNC performs inter-frequency handover or inter-RAT
handover.
l When AMRC is disabled:
– If the RNC receives a report on event 6A1 or 6D, the RNC performs inter-frequency
handover or inter-RAT handover.
The handover triggered by link stability is controlled by the following parameters:
l UlQosAmrInterFreqHoSwitch(BSC6900,BSC6910) or
UlQosWAmrInterFreqHoSwitch(BSC6900,BSC6910): Uplink AMR inter-frequency
handover switch. If this parameter is set to YES, the function triggers an inter-frequency
handover.
l UlQosAmrInterRatHoSwitch(BSC6900,BSC6910) or UlQosWAmrInterRatHoSwitch
(BSC6900,BSC6910): Uplink AMR inter-RAT handover switch. If this parameter is set to
YES, the function triggers an inter-RAT handover.
l If both switches are set to YES, inter-frequency measurement and inter-RAT measurement
are started at the same time. Then, the RNC decides whether to perform an inter-frequency
or inter-RAT handover based on the first report received from the UE.
6.1.3 Downlink Stability Control
Downlink stability control is described as follows:
l If AMRC is enabled, periodical report is applied and RNC determines the events E1, E2,
F1 and F2.
– The RNC can adjust the rate according to events received.
– If the current rate is the GBR and the RNC receives a report of E1, the RNC performs
inter-frequency handover or inter-RAT handover for the UE.
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l If AMRC is disabled, event report is applied and the NodeB reports the events Ea and Eb.
Event F is not required because there is no rate adjustment.
– If the RNC receives a report of event Ea, the RNC performs inter-frequency handover
or inter-RAT handover for the UE.
The handover triggered by link stability is controlled by the following parameters:
l DlQosAmrInterFreqHoSwitch(BSC6900,BSC6910) or
DlQosWAmrInterFreqHoSwitch(BSC6900,BSC6910): Downlink AMR inter-frequency
handover switch. If this parameter is set to YES, the function triggers an inter-frequency
handover.
l DlQosAmrInterRatHoSwitch(BSC6900,BSC6910) or DlQosWAmrInterRatHoSwitch
(BSC6900,BSC6910): Downlink AMR inter-RAT handover switch. If this parameter is set
to YES, the function triggers an inter-RAT handover.
l If both switches are set to YES, inter-frequency measurement and inter-RAT measurement
are started at the same time. Then, the RNC decides whether to perform an inter-frequency
or inter-RAT handover based on the first report received from the NodeB.
6.2 Link Stability Measurement
Introduction
Link stability measurement for AMR services is performed to trigger AMR link stability control.
Table 6-2 Stability measurement items for AMR services
Measurement Item Event Description
UL TX power of the UEs 6A1 and 6A2
6B1 and 6B2
6D
The UE measures uplink
transmit power and reports
the events to the RNC.
DL TX power of the DPCCH
pilot (when AMRC is
enabled)
E1 and E2
F1 and F2
The NodeB periodically
measures and reports
downlink DPCCH pilot
power to the RNC. The RNC
converts it to the DPDCH
power and triggers therespective events by
comparing the power with
the threshold.
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Measurement Item Event Description
DL TX power of the DPCCH
pilot (when AMRC is
disabled)
Ea and Eb The NodeB periodically
measures the power of
DPCCH pilot and converts itto the DPDCH power. When
the measurement reaches the
threshold, the NodeB triggers
the respective events and
periodically reports the
measurements to the RNC.
NOTE
Events 6A, 6B, F, and E are all measurement types defined in the 3GPP specifications. The digits andlower-case letters are used to distinguish between measurement sets of the same type. Measurement control
parameters (such as threshold and hysteresis) of different measurement sets can be delivered and processed
separately. For example, the RNC delivers two sets of measurement control parameters M1 and M2 to the
UE. Then, event 6A reported by the UE based on M1 is considered as event 6A1 and event 6A reported
by the UE based on M2 is considered as event 6A2.
Uplink Measurement for 6A1/6B1/6A2/6B2/6D
Measurement results serve as the basis of AMRC. By comparing the measurement results with
associated thresholds, the UE reports corresponding events. Then, the RNC takes corresponding
AMRC actions.
Uplink AMRC events consist of 6A1, 6A2, 6B1, 6B2, and 6D. These events indicate different
states of the transmit power of the current UE.
After establishing an AMR voice service, the RNC sends the following information to the UE
through a MEASUREMENT CONTROL message:
l Threshold of event 6A1, 6B1, 6A2, 6B2, or 6D for the transmit power
l Time to trigger event 6A1, 6B1, 6A2, 6B2, or 6D
Then, the UE measures the transmit power in real time, filters the measurement results, and takes
corresponding actions:
l If the UE transmit power is above the threshold of event 6A1 for the transmit power for a period of time specified by UlAmrTrigTime6A1(BSC6900,BSC6910), event 6A1 is
triggered.
l If the UE transmit power is below the threshold of event 6B1 for the transmit power for a
period of time specified by UlAmrTrigTime6B1(BSC6900,BSC6910), event 6B1 is
triggered.
l If the UE transmit power is below the threshold of event 6B2 for the transmit power for a
period of time specified by UlAmrTrigTime6B2(BSC6900,BSC6910), event 6B2 is
triggered.
l If the UE transmit power is above the threshold of event 6A2 for the transmit power for a
period of time specified by UlAmrTrigTime6A2(BSC6900,BSC6910), event 6A2 is
triggered.
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l If the UE transmit power is equal to the maximum transmit power for a period of time
specified by UlAmrTrigTime6D(BSC6900,BSC6910), event 6D is triggered.
Each time a measurement event is triggered, the UE sends a measurement event report to the
UTRAN through a MEASUREMENT REPORT message. Then, the uplink AMRC function
performs corresponding control tasks according to the report.
Events 6A1, 6A2, 6B1, and 6B2 have different thresholds, as shown in Figure 6-1.
Figure 6-1 Uplink events and thresholds
As shown in Figure 6-1, the maximum uplink transmit power for conversational services is
specified by the parameter MaxUlTxPowerforConv(BSC6900,BSC6910). Delta_6a1,
Delta_6b1, Delta_6a2, and Delta_6b2 are relative thresholds, which are the differences between
the absolute thresholds of events 6A1, 6B1, 6A2, and 6B2 for the transmit power and themaximum uplink transmit power of conversational service. They are specified by parameters
UlThd6A1(BSC6900,BSC6910), UlThd6B1(BSC6900,BSC6910), UlThd6A2
(BSC6900,BSC6910), and UlThd6B2(BSC6900,BSC6910), respectively.
The absolute thresholds are calculated by the following formulas:
l Threshold of event 6A1 for the transmit power = MaxUlTxPowerforConv
(BSC6900,BSC6910) - UlThd6A1(BSC6900,BSC6910)
l Threshold of event 6B1 for the transmit power = MaxUlTxPowerforConv
(BSC6900,BSC6910) - UlThd6B1(BSC6900,BSC6910)
l Threshold of event 6A2 for the transmit power = MaxUlTxPowerforConv
(BSC6900,BSC6910) - UlThd6A2(BSC6900,BSC6910)
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l Threshold of event 6B2 for the transmit power = MaxUlTxPowerforConv
(BSC6900,BSC6910) - UlThd6B2(BSC6900,BSC6910)
The threshold of event 6D is the maximum transmit power of the UE.
Figure 6-2 Threshold of event 6D
DL Measurement for Event E1/E2/F1/F2
Measurement results serve as the basis of AMRC. By comparing the measurement results with
associated thresholds, the RNC takes corresponding AMRC actions.
Downlink AMRC events consist of E1, E2, F1, and F2. These events indicate different states of
the transmit power of the current DPDCH. The RNC adjusts the maximum permissible downlink
AMR codec rate according to the reported events.
After establishing a service, the RNC requests the NodeB to periodically send measurement
reports on the downlink transmitted code power (TCP) in the pilot field of the DPCCH. After receiving the request, the NodeB sends the measurement reports of the TCP to the RNC
periodically.
After receiving the measurement reports, the RNC converts the measured DL TCP in the pilot
field of the DPCCH into the average transmit power of the DPDCH. Then, the RNC compares
the average DPDCH transmit power with the thresholds of events E1, E2, F1, and F2 to determine
the type of event.
l When the average transmit power of the DPDCH is above the threshold of event E1 for the
transmit power, event E1 is triggered.
l When the average transmit power of the DPDCH is below the threshold of event E2 for the
transmit power, event E2 is triggered.
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l When the average transmit power of the DPDCH is below the threshold of event F1 for the
transmit power, event F1 is triggered.
l When the average transmit power of the DPDCH is above the threshold of event F2 for the
transmit power, event F2 is triggered.
Events E1, E2, F1, and F2 have different thresholds, as shown in Figure 6-3.
Figure 6-3 DL events and thresholds
The maximum downlink DPDCH transmit power shown in Figure 6-3 is specified by the
parameter RlMaxDlPwr(BSC6900,BSC6910). Delta_E1, Delta_E2, Delta_F1, and Delta_F2
are relative thresholds, which are the differences between the absolute thresholds of events E1,
E2, F1, and F2 for the transmit power and the maximum downlink DPDCH transmit power.
They are specified by the parameters DlThdE1(BSC6900,BSC6910), DlThdE2
(BSC6900,BSC6910), DlThdF1(BSC6900,BSC6910), and DlThdF2(BSC6900,BSC6910)
respectively.
The absolute thresholds are calculated according to the following formulas:
l Threshold of event E1 for the transmit power = PPCPICH + RlMaxDlPwr
(BSC6900,BSC6910) - DlThdE1(BSC6900,BSC6910)
l Threshold of event E2 for the transmit power = PPCPICH + RlMaxDlPwr
(BSC6900,BSC6910) - DlThdE2(BSC6900,BSC6910)
l Threshold of event F1 for the transmit power = PPCPICH + RlMaxDlPwr
(BSC6900,BSC6910) - DlThdF1(BSC6900,BSC6910)
l Threshold of event F2 for the transmit power = PPCPICH + RlMaxDlPwr
(BSC6900,BSC6910) - DlThdF2(BSC6900,BSC6910)
PPCPICH is the power for P-CPICH. RlMaxDlPwr(BSC6900,BSC6910) is the power offset
relative to P-CPICH.
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Downlink Measurement for Event Ea/Eb
Event E is used to check whether the downlink power is excessively high. Event E consists of
event Ea and event Eb.
According to the measurement result of downlink transmit power in the pilot field of the DPCCH,event E is triggered as follows:
l If the transmit power in the pilot field of the DPCCH is above the threshold of event Ea for
a period of time specified by DlAmrTrigTimeE(BSC6900,BSC6910), event Ea is
triggered. Then, the NodeB periodically reports the measurement results of the transmit
power to the RNC. The period for the NodeB to report measurement results is specified by
the parameter ChoiceRptUnitForAmrE(BSC6900,BSC6910), TenMsecForAmrE
(BSC6900,BSC6910), or MinForAmrE(BSC6900,BSC6910).
l If the transmit power in the pilot field of the DPCCH is below the threshold of event Eb
for a period of time ( DlAmrTrigTimeE(BSC6900,BSC6910)), event Eb is triggered.
The threshold of event E is related to services. The absolute threshold of event Ea or Eb is
calculated according to the following formula:
E threshold = Maximum DL power - Relative threshold + PO3
In the equation:
l E threshold is the absolute threshold of event Ea or Eb.
l PO3 is the offset from the transmit power in the pilot field of the DPCCH to the transmit
power of the DPDCH.
l Relative threshold is the relative threshold of event Ea or Eb, specified by the parameter
ThdEa(BSC6900,BSC6910) or ThdEb(BSC6900,BSC6910) respectively.
l Maximum downlink power is the maximum downlink transmit power of DPDCHs.
6.3 AMRC Based on Link Stability
Uplink Rate Adjustment
The uplink AMRC function is based on uplink UE transmit power. The uplink AMRC function
can adjust the maximum permissible uplink AMR codec rate in the controllable rate set by only
one level each time.
The detailed process is as follows:
l If the report on event 6A1 or 6D is received, the maximum permissible uplink AMR codec
rate is decreased. Rate decrease is performed continually until the report on event 6B1 or
6B2 is received. If the rate is the GBR before the rate decrease or if the rate decrease fails,
an inter-frequency or inter-RAT handover is performed.
l If the report on event 6B2 is received and the uplink load is normal, the maximum
permissible AMR codec rate is increased. Rate increase is performed continually until the
report on event 6A2 or 6A1 is received. If the rate is already the maximum rate in the
controllable rate set before rate increase, rate increase is not performed.
The timer is specified by the parameter AmrUlRateAdjTimerLen(BSC6900,BSC6910)/
WAmrUlRateAdjTimerLen(BSC6900,BSC6910). This parameter specifies the duration of
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waiting for the voice quality enhanced acknowledgment after the uplink AMR mode adjustment
when the associated command is delivered. After each adjustment, the uplink rate adjustment
waiting timer for AMR service is started to avoid frequent adjustment and stops when the next
measurement report is received. If no measurement report is received when the uplink AMRC
timer expires, you can infer that the measured value remains in the same state as that before the previous uplink AMRC mode adjustment. The previous AMRC mode adjustment is not
effective, and another adjustment is required.
AMR-WB services have smaller uplink coverage and therefore higher uplink call drop rate than
AMR-NB services. In addition, smartphones that support AMR-WB services usually initiate 1
AMR+1 PS BE combined services. To reduce the uplink call drop rate for 1 AMR+1 PS BE
combined services, the function of uplink AMRC based on link stability is introduced. The rate
of most PS BE services in combined services is 8 kbit/s. When an event 6A1 report is received
(that is, when the transmit power of the UE is limited), this function enables the RNC to decrease
the rate for AMR services. This ensures the MOS and decreases the risk of call drop rate in the
uplink for AMR services. In combined service scenarios, the measurement control is delivered
based on the measurement threshold parameters of AMR services and only the rate of AMR services is adjusted upon the reception of a measurement report.
To enable the function of uplink AMRC based on link stability for combined services, do as
follows:
l For 1 AMR-NB+1 PS BE combined services, run the RNC MML command SET
UCORRMALGOSWITCH and select the CS_COMB_NAMRC_SWITCH check box
under the CsSwitch parameter.
l For 1 AMR-WB+1 PS BE combined services, run the RNC MML command SET
UCORRMALGOSWITCH and select the CS_COMB_WAMRC_SWITCH check box
under the CsSwitch parameter.
DL Rate Adjustment
The DL AMRC function adjusts the maximum permissible downlink AMR codec rate in the
controllable rate set based on the transmit power of the DPDCH. This function can adjust the
rate by only one level each time.
The detailed process is as follows:
l If the report on event E1 is received, the maximum permissible DL AMR codec rate is
decreased. Rate decrease is performed continually until the power is below the threshold
of event E2. If the rate is the GBR before the rate decrease or if the rate decrease fails, an
inter-frequency or inter-RAT handover is performed.l If the report on event F1 is received and the DL load is normal, the maximum permissible
AMR codec rate is increased. Rate increase is performed continually until the power is
above the threshold of event F2. If the rate is already the maximum rate in the controllable
rate set before rate increase, rate increase is not performed.
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7 Network Impact
7.1 WRFD-010613 AMR-WB (Adaptive Multi Rate WideBand)
Voice Quality
ITU-T P.862.1 and ITU-T P.863 are two mainstream standards for evaluating voice quality.
ITU-T P.862.1 can evaluate only quality of AMR-NB voice services within the 4 kHz bandwidth,
as shown in Figure 7-1. ITU-T P.863 was introduced in 2011 and can evaluate quality of AMR-
NB and AMR-WB services within the 8 kHz bandwidth, as shown in Figure 7-2.
Figure 7-1 AMR-NB MOS evaluated based on ITU-T P.862.1 (BLER=0%)
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Table 7-4 Comparison of the relative proportion of admitted UE numbers between AMR-NB
and AMR-WB services
Service
Item
AMR-NB
(12.2kbit/s)
AMR-
NB
(7.95kbit/s)
AMR-
NB
(4.75kbit/s)
AMR- WB
(6.6kbit/s)
AMR- WB
(8.85kbit/s)
AMR- WB
(12.65kbit/s)
AMR- WB
(15.85kbit/s)
AMR- WB
(23.85kbit/s)
Relative
proporti
on of
admitted
UE
numbersin case
of uplink
load
congesti
on
100% 122
%
155
%
120% 107% 88% 77% 58%
Relative
proporti
on of
admitted
UE
numbersin case
of
downlin
k power
congesti
on
100% 120
%
149
%
133% 109% 89% 73% 55%
The function of AMR-WB SF reconfiguration based on LDR triggered by code congestion can
effectively relieve the code congestion caused by 23.85 kbit/s AMR-WB services.
Network Performance
This feature provides noticeable uplink and downlink coverage gains, which improves user
experience for cell edge users (CEUs).
Table 7-5 compares the relative coverage proportion between AMR-WB services and AMR-
NB services.
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Table 7-5 Comparison of relative coverage proportion between AMR-WB services and AMR-
NB services
Service
Item
AMR-
NB
(12.2
kbit/s)
AMR-
NB
(7.95
kbit/s)
AMR-
NB
(4.75
kbit/s)
AMR-
WB
(6.6
kbit/s)
AMR-
WB
(8.85
kbit/s)
AMR-
WB
(12.65
kbit/s)
AMR-
WB
(15.85
kbit/s)
AMR-
WB
(23.85
kbit/s)
Uplink
coverage
radius in
case of
limited
uplink
coverage
100% 109% 117% 106% 103% 96% 94% 87%
Other Impact
When the WRFD-010501 Conversational QoS Class or WRFD-010613 AMR-WB (Adaptive
Multi Rate Wide Band) feature is enabled, this feature increases the number of UEs performing
speech services and the MOS for speech services.
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8 Engineering Guidelines
8.1 WRFD-010613 AMR-WB (Adaptive Multi Rate WideBand)
8.1.1 When to Use This Feature
It is recommended that this feature be enabled for operators who require high speech quality.
After this feature is enabled, 23.85 kbit/s AMR-WB services consume more resources than 12.2
kbit/s AMR-NB services, such as air interface resources, CE resources, and code resources. If
resources become insufficient, the RAB setup success rate decreases. With the same downlink
transmit power, the cell coverage for 23.85 kbit/s AMR-WB services is smaller than that for
12.2 kbit/s AMR-NB services, and the speech quality at the cell edge is poorer. As a result, the
call drop rate of 23.85 kbit/s AMR-WB services is higher than that of 12.2 kbit/s AMR-NB
services. For cells that use 23.85 kbit/s AMR-WB services, parameter optimization is
recommended to improve downlink coverage, and the AMRC function needs to be enabled to
improve uplink coverage. For details, see section "8.1.5 Parameter Optimization."
After this feature is enabled, it is recommended that WRFD-011600 TFO/TrFO be enabled to
achieve the optimal AMR-WB voice effect. Otherwise, the TrFO cannot be established on the
CN side and transcoders are needed so that end to end (E2E) voice services cannot achieve the
AMR-WB voice effect after the voice quality deteriorates.In addition, you are advised tooptimize parameter settings to reduce the call drop rate for AMR-WB services. For details, see
section "8.1.5 Parameter Optimization."
After this feature is enabled, UEs with compatibility issues may become muted or hear metallic
sounds. Therefore, perform InterOperability Testing (IOT) tests to check for UE compatibility
issues before enabling this feature.
8.1.2 Information to Be Collected
Collect UE information to check for UE compatibility issues during IOT tests.
The VS.AttCall.UECapab.AMRWB counter measures the number of UEs that support WB-
AMR on the live network.
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8.1.3 Network Planning
None
8.1.4 Feature Deployment
8.1.4.1 Requirements
l The CN supports this feature.
l The UEs support this feature.
l The MSC and universal media gateway (UMG) support AMR-WB.
l The Wide Band AMR license has been activated on the RNC side.
Feature ID Feature Name License
Control Item
NE Sales Unit
WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
AMR-WB
(Adaptive Multi
Rate Wide
Band) (per Erl)
RNC per Erl
8.1.4.2 Data Preparation
Parameter Name Parameter ID Setting Description
Source
Max Mode Of
Wideband AMRC
for Golden Users
GoldMaxMode
(BSC6900,BSC6910
)
The recommended
value is
WBAMR_BITRAT
E_23.85K .
Radio planning
Max Mode of
Wideband AMRC
for Silver Users
SilverMaxMode
(BSC6900,BSC6910
)
The recommended
value is
WBAMR_BITRAT
E_23.85K .
Radio planning
Max Mode of Wideband AMRC
for Copper Users
CopperMaxMode(BSC6900,BSC6910
)
The recommendedvalue is
WBAMR_BITRAT
E_23.85K .
Radio planning
8.1.4.3 Precautions
Do not configure parameters without Huawei professional technical support because incorrect
parameter settings may affect system capacity and network performance.
Note the following:
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Table 8-1 Configuring the parameters on the CME
SN MO NE Parameter Name
Parameter ID Configurable inCME BatchModification
Center
1 UAMRCWB RN
C
Max Mode
Of
Wideband
AMRC for
Golden
Users
GoldMaxMode
(BSC6900,
BSC6910)
Yes
Max Mode
of
Narrowban
d AMRCfor Silver
Users
SilverMaxMode
(BSC6900,
BSC6910)
Max Mode
of
Narrowban
d AMRC
for Copper
Users
CopperMaxMod
e
(BSC6900,
BSC6910)
2 UCELLAMR
CWB
RN
C
Max Mode
Of Wideband
AMRC for
Golden
Users
GoldMaxMode
(BSC6900, BSC6910)
Yes
Max Mode
of
Narrowban
d AMRC
for Silver
Users
SilverMaxMode
(BSC6900,
BSC6910)
Max Mode
of
Narrowban
d AMRC
for Copper
Users
CopperMaxMod
e
(BSC6900,
BSC6910)
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8.3.4.2 Data Preparation
Parameter Name Parameter ID Setting Description
Source
CS AlgorithmSwitch
CsSwitch
(BSC6900,BSC6910
)
TheCS_AMRC_SWIT
CH check box is
selected.
Radio planning
QoS Switch for
AMR Traffic
AMRQosPerform
(BSC6900,BSC6910
)
It is recommended
that this switch be
turned on.
Radio planning
8.3.4.3 Activation
8.3.4.3.1 Using MML Commands
Step 1 Run the RNC MML command SET UCORRMALGOSWITCH. In this step, select the
CS_AMRC_SWITCH check box under the CS Algorithm Switch parameter.
Step 2 Run the RNC MML command SET UQOSACT. In this step, set QoS Switch for AMR
Traffic to YES, set Switch of WAMR Uplink Rate Adjustment to YES, and set Switch for
WAMR Downlink Rate to YES..
Step 3 (Optional) Run the RNC MML SET UQUALITYMEAS to set RNC-level parameters related
to AMR/WB-AMR Speech Rates Control based on link stability.
Step 4 (Optional) Set parameters related to AMR/AMR-WB Speech Rates control.
l Set the parameters related to AMR speech rate control.
1. Run the RNC MML command SET UCORRMALGOSWITCH to support NB-AMRC.
In this step, deselect the CS_AMRC_NB_CMP_SWITCH check box under the CS
Algorithm Switch parameter.
NOTE
CS_AMRC_NB_CMP_SWITCH is deselected by default. If it is selected, some NB-AMRC
compatibility issues exist and NB-AMRC is disabled.
2. Run the RNC MML command SET UAMRC to set the RNC-level parameters related toAMR speech rate control.
3. Run the RNC MML command SET UCORRMALGOSWITCH. In this step, select the
COMB_NAMRC_SWITCH check box under the CS Algorithm Switch parameter.
l Set the parameters related to AMR-WB speech rate control.
1. Run the RNC MML command SET UCORRMALGOSWITCH to support WB-AMRC.
In this step, deselect the CS_AMRC_WB_CMP_SWITCH check box under the CS
Algorithm Switch parameter.
NOTE
CS_AMRC_WB_CMP_SWITCH is deselected by default. If it is selected, some WB-AMRCcompatibility issues exist and WB-AMRC is disabled.
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1. Configure a single object on the CME.
Set parameters on the CME according to the operation sequence in Table 8-4. For instructions
on how to perform the CME single configuration, see CME Single Configuration Operation
Guide.
2. (Optional) Modify objects in batches on the CME. (CME batch modification center)
To modify objects in batches, click on the CME to start the batch modification wizard. For
instructions on how to perform a batch modification through the CME batch modification center,
press F1 on the wizard interface to obtain online help.
Table 8-4 Configuring the parameters on the CME
SN MO NE ParameterName
ParameterID
Configurable in
CMEBatchModification Center
1 UCORRMAL
GOSWITCH
RN
C
CS Algorithm
Switch
Set this parameter
to
CS_AMRC_SWI
TCH-1
CsSwitch
(BSC6900,
BSC6910)
Yes
2 UQOSACT RNC
QoS Switch for AMR Traffic
Set this parameter
to YES
AMRQosP erform
(BSC6900,
BSC6910)
Yes
Adjustment
Switch for AMR
Uplink Rate
UlQosAmr
AdjSwitch
(BSC6900,
BSC6910)
Switch of WAMR
Uplink Rate
Adjustment
UlQosWA
mrAdjSwit
ch
(BSC6900,
BSC6910)
Switch of AMR
Downlink Rate
Adjustment
DlQosAmr
AdjSwitch
(BSC6900,
BSC6910)
3 (Optional) UTYPRABQ
UALITYME
AS
RN
C
Switch of AMR
Downlink Rate
Adjustment
UlThd6A1
(BSC6900,
BSC6910)
No
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SN MO NE ParameterName
ParameterID
Configurable inCMEBatch
Modification Center
Uplink Event 6A2
Relative
Threshold
UlThd6A2
(BSC6900,
BSC6910)
Uplink Event 6B1
Relative
Threshold
UlThd6B1
(BSC6900,
BSC6910)
Uplink Event 6B1
RelativeThreshold
UlThd6B2
(BSC6900, BSC6910)
Statistic Block
Number for 5A
Event
StaBlkNu
m5A
(BSC6900,
BSC6910)
Event 5A
Threshold
Thd5A
(BSC6900,
BSC6910)
Interval Block
Number
HangBlock
Num5A
(BSC6900,
BSC6910)
Event Ea Relative
Threshold
ThdEa
(BSC6900,
BSC6910)
Event Eb Relative
Threshold
ThdEb
(BSC6900,
BSC6910)
4 (Optional)NOTE
Set the
parameters
related to AMR
speech rate
control.
UCORRMALGOSWITCH
RNC
CS AlgorithmSwitch
Set this parameter
to
CS_AMRC_NB_
CMP_SWITCH-0
&
COMB_NAMRC
_SWITCH-1
CsSwitch(BSC6900,
BSC6910)
Yes
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Figure 8-3 AMR mode
8.3.4.5 Deactivation
8.3.4.5.1 Using MML Commands
Run the RNC MML command SET UCORRMALGOSWITCH. In this step, deselect the
CS_AMRC_SWITCH check box under the CS Algorithm Switch parameter.
8.3.4.5.2 MML Command Examples
//Deactivating AMR/WB-AMR Speech Rates Control
SET UCORRMALGOSWITCH: CsSwitch=CS_AMRC_SWITCH-0;
8.3.4.5.3 Using the CME
NOTE
When configuring the feature on the CME, perform a single configuration first, and then perform a batch
modification if required.
Configure the parameters of a single object before a batch modification. Perform a batch modification
before logging out of the parameter setting interface.
1. Configure a single object on the CME.
Set parameters on the CME according to the operation sequence in Table 8-5. For instructions
on how to perform the CME single configuration, see CME Single Configuration Operation
Guide.
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8.3.6 Troubleshooting
None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
16,
RESERVED_SWITCH_9_BIT
17,
RESERVED_S
WITCH_9_BIT
18,
RESERVED_S
WITCH_9_BIT
19,
RESERVED_S
WITCH_9_BIT
20,
RESERVED_S
WITCH_9_BIT
21,
RESERVED_S
WITCH_9_BIT
22,
RESERVED_S
WITCH_9_BIT
23,
RESERVED_S
WITCH_9_BIT
24,RESERVED_S
WITCH_9_BIT
25,
RESERVED_S
WITCH_9_BIT
26,
RESERVED_S
WITCH_9_BIT
27,
RESERVED_S
WITCH_9_BIT
28,
RESERVED_S
WITCH_9_BIT
29,
RESERVED_S
WITCH_9_BIT
30,
RESERVED_S
WITCH_9_BIT
31,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
:
0,RESERVED_ SWITCH_9_BI
T19:0,RESERV
ED_SWITCH_
9_BIT20:0,RES
ERVED_SWIT
CH_9_BIT21:0,
RESERVED_S
WITCH_9_BIT
22:0,RESERVE
D_SWITCH_9_
BIT23:0,RESE
RVED_SWITC
H_9_BIT24:0,R
ESERVED_SW
ITCH_9_BIT25
:
0,RESERVED_
SWITCH_9_BI
T26:0,RESERV
ED_SWITCH_
9_BIT27:0,RES
ERVED_SWIT
CH_9_BIT28:0,RESERVED_S
WITCH_9_BIT
29:0,RESERVE
D_SWITCH_9_
BIT30:0,RESE
RVED_SWITC
H_9_BIT31:0,R
ESERVED_SW
ITCH_9_BIT32
:0
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RsvSwitch9 BSC6910 SET
UALGORSVPARA
None None Meaning:RRM
algorithmreserved U32
Switch Para 9.
The 32-bit
parameter is
reserved for
further change
request use.
Disuse
statement: This
parameter is
used
temporarily in
patch versions
and will be
replaced with a
new parameter
in later versions.
The new
parameter ID
reflects the
parameter
function.
Therefore, this parameter is not
recommended
for the
configuration
interface.
GUI Value
Range:RESER
VED_SWITCH
_9_BIT1,
RESERVED_S
WITCH_9_BIT2,
RESERVED_S
WITCH_9_BIT
3,
RESERVED_S
WITCH_9_BIT
4,
RESERVED_S
WITCH_9_BIT
5,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_9_BIT
6,RESERVED_S
WITCH_9_BIT
7,
RESERVED_S
WITCH_9_BIT
8,
RESERVED_S
WITCH_9_BIT
9,
RESERVED_S
WITCH_9_BIT
10,
RESERVED_S
WITCH_9_BIT
11,
RESERVED_S
WITCH_9_BIT
12,
RESERVED_S
WITCH_9_BIT
13,
RESERVED_S
WITCH_9_BIT14,
RESERVED_S
WITCH_9_BIT
15,
RESERVED_S
WITCH_9_BIT
16,
RESERVED_S
WITCH_9_BIT
17,
RESERVED_S
WITCH_9_BIT
18,
RESERVED_S
WITCH_9_BIT
19,
RESERVED_S
WITCH_9_BIT
20,
RESERVED_S
WITCH_9_BIT
21,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_9_BIT
22,RESERVED_S
WITCH_9_BIT
23,
RESERVED_S
WITCH_9_BIT
24,
RESERVED_S
WITCH_9_BIT
25,
RESERVED_S
WITCH_9_BIT
26,
RESERVED_S
WITCH_9_BIT
27,
RESERVED_S
WITCH_9_BIT
28,
RESERVED_S
WITCH_9_BIT
29,
RESERVED_S
WITCH_9_BIT30,
RESERVED_S
WITCH_9_BIT
31,
RESERVED_S
WITCH_9_BIT
32
Unit:None
Actual Value
Range:RESER
VED_SWITCH _9_BIT1,
RESERVED_S
WITCH_9_BIT
2,
RESERVED_S
WITCH_9_BIT
3,
RESERVED_S
WITCH_9_BIT
4,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_9_BIT
5,RESERVED_S
WITCH_9_BIT
6,
RESERVED_S
WITCH_9_BIT
7,
RESERVED_S
WITCH_9_BIT
8,
RESERVED_S
WITCH_9_BIT
9,
RESERVED_S
WITCH_9_BIT
10,
RESERVED_S
WITCH_9_BIT
11,
RESERVED_S
WITCH_9_BIT
12,
RESERVED_S
WITCH_9_BIT13,
RESERVED_S
WITCH_9_BIT
14,
RESERVED_S
WITCH_9_BIT
15,
RESERVED_S
WITCH_9_BIT
16,
RESERVED_S
WITCH_9_BIT
17,
RESERVED_S
WITCH_9_BIT
18,
RESERVED_S
WITCH_9_BIT
19,
RESERVED_S
WITCH_9_BIT
20,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_9_BIT
21,RESERVED_S
WITCH_9_BIT
22,
RESERVED_S
WITCH_9_BIT
23,
RESERVED_S
WITCH_9_BIT
24,
RESERVED_S
WITCH_9_BIT
25,
RESERVED_S
WITCH_9_BIT
26,
RESERVED_S
WITCH_9_BIT
27,
RESERVED_S
WITCH_9_BIT
28,
RESERVED_S
WITCH_9_BIT29,
RESERVED_S
WITCH_9_BIT
30,
RESERVED_S
WITCH_9_BIT
31,
RESERVED_S
WITCH_9_BIT
32
DefaultValue:RESERV
ED_SWITCH_
9_BIT1:0,RESE
RVED_SWITC
H_9_BIT2:0,R
ESERVED_SW
ITCH_9_BIT3:
0,RESERVED_
SWITCH_9_BI
T4:0,RESERVE
D_SWITCH_9_
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
0,RESERVED_
SWITCH_9_BIT26:0,RESERV
ED_SWITCH_
9_BIT27:0,RES
ERVED_SWIT
CH_9_BIT28:0,
RESERVED_S
WITCH_9_BIT
29:0,RESERVE
D_SWITCH_9_
BIT30:0,RESE
RVED_SWITC
H_9_BIT31:0,R
ESERVED_SW
ITCH_9_BIT32
:0
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ELOC_CMP_S
WITCH:0
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SpecUserFunc-
tionSwitch2
BSC6910 ADD
UIMEITACMOD
UIMEITAC
None None Meaning:1)
SPECUSER_CSPSR99_DL_B
RLIMITED_S
WITCH
Whether to limit
the DL peak rate
to 8 kbit/s on the
DCH for the PS
service in CS
+PS combined
services of a
special UE. 1:
This switch is
turned on, the
DL peak rate on
the DCH is
limited to 8 kbit/
s. 0: This switch
is turned off,
there is no limit
on the DL peak
rate on the DCH.
2)
SPECUSER_AMR_RATE_CH
G_SWITCH
Whether to
refuse to adjust
the data rate of
special CS UEs.
1: This switch is
turned on, the
RNC does not
adjust the uplink
data rate of
special CS UEs.
0: This switch is
turned off, the
RNC adjusts the
uplink data rate
of special CS
UEs when
required. 3)
SPECUSER_ST
ATIC_RELOC_
DISABLED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
switch is on and
the "TFOTRFO(TFO/TrFO)"
license is
activated, the
RNC supports
the TFO/TRFO
function. 4.
CS_VOICE_D
YN_CH_CONF
_SWITCH:
Whether to
support the
dynamic CS
voice channel
allocation
function. 5.
CS_AMRC_W
B_CMP_SWIT
CH: When this
switch is turned
on, wideband
AMRC
compatibility
issues exist andtherefore the
service data rate
must not be
adjusted. When
this switch is
turned off, such
issues do not
exist and
therefore the
service data rate
can be adjusted.
6.
CS_AMRC_NB
_CMP_SWITC
H: When this
switch is turned
on, narrowband
AMRC
compatibility
issues exist and
therefore the
service data rate
must not be
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
AMR-WB
service islowered through
RB
reconfiguration,
and the
spreading factor
(SF) of the
AMR-WB
service is
reconfigured,
when code
resource is
congested and
code resources
can be saved by
RB
reconfiguration.
When this
switch is turned
off, the rate of
the AMR-WB
service is not
lowered through
RBreconfiguration
upon code
congestion. 9.
CS_COMB_W
AMRC_SWITC
H: Whether the
adaptive multi
rate control
(AMRC)
function is
enabled for an
AMR-WB
service in
combined
services. When
this switch and
CS_AMRC_S
WITCH are
turned on, and
CS_AMRC_W
B_CMP_SWIT
CH is turned off,
the AMRC
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
function is
enabled for theAMR-WB
service in
combined
services. When
this switch is
turned off, the
AMRC function
is disabled for
the AMR-WB
service in
combined
services. 10.
CS_COMB_NA
MRC_SWITCH
: Whether the
AMRC function
is enabled for an
AMR-NB
service in
combined
services. When
this switch and
CS_AMRC_SWITCH are
turned on, and
CS_AMRC_NB
_CMP_SWITC
H is turned off,
the AMRC
function is
enabled for the
AMR-NB
service in
combined
services. When
this switch is
turned off, the
AMRC function
is disabled for
the AMR-NB
service in
combined
services. 11.
CS_LDR_AMR
_RATEUP_OP
T_SWITCH:
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
Whether to
increase theuplink and
downlink rates
of AMR
services when
radio resources
of the cell are
congested.
When this
switch is turned
on, the RNC can
increase the
uplink and
downlink rates
of AMR
services when
radio resources
(except power
resources) of the
cell are
congested. If
power resources
are congested,
the RNC cannotincrease the
rates. When this
switch is turned
off, the RNC
cannot increase
the rates when
any type of
resources is
congested. 12.
CS_AMR_TRF
O_CMP_SWIT
CH:
Compatibility
switch for
uplink AMR
service rate
increase
requests. This
switch applies to
the following
scenario: 1) The
TrFO or TFO
function is
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
function when
power resourcesof a cell are
congested.
When this
switch is turned
on, the RNC can
do so. When this
switch is turned
off, the RNC
cannot do so. 14.
CS_IMMEDIA
TE_RATE_CO
NTROL_OPT_
SWITCH:
When the RNC
starts immediate
rate adjustment
for relocation of
a UE processing
AMR services.
If this switch is
turned on. The
RNC starts
immediate rateadjustment for
AMR services
after Relocation
Detect. If this
switch is turned
off. The RNC
starts immediate
rate adjustment
for AMR
services after the
UE relocation is
completed. 15.
CS_TRFO_MU
TI_UL_RATE_
CONTROL_S
WITCH:
Whether the
optimization
solution to
processing
frequent rate
control
procedures takes
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
effect. If this
switch is turnedon, the
optimization
solution takes
effect, if the
RNC receives a
new uplink rate
control frame in
AMR services
before the
current Iu UP
rate control
procedure is
terminated, the
RNC terminates
the current
procedure
immediately and
adjusts the
uplink AMR
service rate
according to the
latest frame. If
this switch isturned off, the
optimization
solution does
not take effect, if
the RNC
receives a new
uplink rate
control frame in
AMR services
before the
current Iu UP
rate control
procedure is
terminated, the
RNC continues
the current Iu UP
rate control
procedure and
ignores the latest
rate control
frame. 16.
CS_RB_AMR_
TFI_CMP_SWI
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CS_RB_AMR_
TFI_CMP_SWITCH
Default
Value:CS_AM
RC_SWITCH:
0,CS_HANDO
VER_TO_UTR
AN_DEFAULT
_CFG_SWITC
H:
1,CS_IUUP_V2
_SUPPORT_S
WITCH:
0,CS_VOICE_
DYN_CH_CO
NF_SWITCH:
0,CS_AMRC_
WB_CMP_SWI
TCH:
0,CS_AMRC_
NB_CMP_SWI
TCH:
0,CS_AMRC_
WB_RATE_ADJUST_GRAD
UALLY_SWIT
CH:
0,CS_WAMR_
SF_RECONF_S
WITCH:
0,CS_COMB_
WAMRC_SWI
TCH:
0,CS_COMB_
NAMRC_SWITCH:
0,CS_LDR_AM
R_RATEUP_O
PT_SWITCH:
0,CS_AMR_TR
FO_CMP_SWI
TCH:
0,CS_COMB_
AMRC_POWE
RLDR_SWITC
H:
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CsSwitch BSC6910 SET
UCORRMALGOSWITCH
WRFD-010613
WRFD-021104
WRFD-011600
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
Emergency Call
TFO/TrFO
AMR/WB-
AMR Speech
Rates Control
Meaning:1.
CS_AMRC_SWITCH: When
the switch is on
and the AMRC
license is
activated, the
AMR control
function is
enabled for
AMR services.
2.
CS_HANDOV
ER_TO_UTRA
N_DEFAULT_
CFG_SWITCH:
When the switch
is on, the default
configurations
of signaling and
RABs, which
are stipulated in
3GPP 25.331,
are used for CS
servicerelocation of the
UE from GSM
or LTE to
WCDMA.
When the switch
is not on, the
default
configurations
are not used.
Instead, the
complete
information of
RB, TrCH, and
PhyCH, which
are in the
HANDOVER
TO UTRAN
COMMAND
message is used.
3.
CS_IUUP_V2_
SUPPORT_SW
ITCH: When the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
adjusted. When
this switch isturned off, such
issues do not
exist and
therefore the
service data rate
can be adjusted.
7.
CS_AMRC_W
B_RATE_ADJ
UST_GRADU
ALLY_SWITC
H: Whether
wideband
AMRC can be
adjusted level by
level according
to the data rate
sets configured
by the
CN .When this
switch is turned
off, wideband
AMRC cannot be adjusted level
by level. When
this switch is
turned on,
wideband
AMRC can be
adjusted level by
level. 8.
CS_WAMR_SF
_RECONF_SW
ITCH: Whether
the rate of an
AMR-WB
service is
lowered through
RB
reconfiguration
upon code
resource
congestion.
When this
switch is turned
on, the rate of an
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
AMR-WB
service islowered through
RB
reconfiguration,
and the
spreading factor
(SF) of the
AMR-WB
service is
reconfigured,
when code
resource is
congested and
code resources
can be saved by
RB
reconfiguration.
When this
switch is turned
off, the rate of
the AMR-WB
service is not
lowered through
RBreconfiguration
upon code
congestion. 9.
CS_COMB_W
AMRC_SWITC
H: Whether the
adaptive multi
rate control
(AMRC)
function is
enabled for an
AMR-WB
service in
combined
services. When
this switch and
CS_AMRC_S
WITCH are
turned on, and
CS_AMRC_W
B_CMP_SWIT
CH is turned off,
the AMRC
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
function is
enabled for theAMR-WB
service in
combined
services. When
this switch is
turned off, the
AMRC function
is disabled for
the AMR-WB
service in
combined
services. 10.
CS_COMB_NA
MRC_SWITCH
: Whether the
AMRC function
is enabled for an
AMR-NB
service in
combined
services. When
this switch and
CS_AMRC_SWITCH are
turned on, and
CS_AMRC_NB
_CMP_SWITC
H is turned off,
the AMRC
function is
enabled for the
AMR-NB
service in
combined
services. When
this switch is
turned off, the
AMRC function
is disabled for
the AMR-NB
service in
combined
services. 11.
CS_LDR_AMR
_RATEUP_OP
T_SWITCH:
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
enabled. 2) The
peer RNCadjusts the
downlink rate of
an AMR service,
and therefore the
CN sends the
local RNC an
uplink rate
increase request
for the AMR
service. 3) The
local RNC
cannot increase
the uplink rate
for the AMR
service. In this
scenario: 1) If
this switch is
turned on, the
local RNC sends
the CN a
message, which
indicates that the
uplink rateincrease
succeeds. 2) If
this switch is
turned off, the
local RNC sends
the CN a
message, which
indicates that the
uplink rate
increase fails.
13.
CS_COMB_A
MRC_POWER
LDR_SWITCH:
Whether to
adjust the uplink
and downlink
rates of the NB-
AMR or WB-
AMR service in
combined
services using
the AMRC
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
function when
power resourcesof a cell are
congested.
When this
switch is turned
on, the RNC can
do so. When this
switch is turned
off, the RNC
cannot do so. 14.
CS_IMMEDIA
TE_RATE_CO
NTROL_OPT_
SWITCH:
When the RNC
starts immediate
rate adjustment
for relocation of
a UE processing
AMR services.
If this switch is
turned on. The
RNC starts
immediate rateadjustment for
AMR services
after Relocation
Detect. If this
switch is turned
off. The RNC
starts immediate
rate adjustment
for AMR
services after the
UE relocation is
completed. 15.
CS_TRFO_MU
TI_UL_RATE_
CONTROL_S
WITCH:
Whether the
optimization
solution to
processing
frequent rate
control
procedures takes
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
effect. If this
switch is turnedon, the
optimization
solution takes
effect, if the
RNC receives a
new uplink rate
control frame in
AMR services
before the
current Iu UP
rate control
procedure is
terminated, the
RNC terminates
the current
procedure
immediately and
adjusts the
uplink AMR
service rate
according to the
latest frame. If
this switch isturned off, the
optimization
solution does
not take effect, if
the RNC
receives a new
uplink rate
control frame in
AMR services
before the
current Iu UP
rate control
procedure is
terminated, the
RNC continues
the current Iu UP
rate control
procedure and
ignores the latest
rate control
frame. 16.
CS_RB_AMR_
TFI_CMP_SWI
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
TCH: Whether
the RB setup,reconfiguration,
and release
messages for PS
services carry
TFI information
about AMR
services in CS
+PS combined
services when
CS_AMRC_S
WITCH is set to
on. If this switch
is turned on, the
RB setup,
reconfiguration,
and release
messages for PS
services carry
TFI information
about AMR
services in CS
+PS combined
services. If thisswitch is turned
off, the RB
setup,
reconfiguration,
and release
messages for PS
services do not
carry TFI
information
about AMR
services in CS
+PS combined
services.
GUI Value
Range:CS_AM
RC_SWITCH,
CS_HANDOV
ER_TO_UTRA
N_DEFAULT_
CFG_SWITCH,
CS_IUUP_V2_
SUPPORT_SW
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ITCH,
CS_VOICE_DYN_CH_CONF
_SWITCH,
CS_AMRC_W
B_CMP_SWIT
CH,
CS_AMRC_NB
_CMP_SWITC
H,
CS_AMRC_W
B_RATE_ADJ
UST_GRADU
ALLY_SWITC
H,
CS_WAMR_SF
_RECONF_SW
ITCH,
CS_COMB_W
AMRC_SWITC
H,
CS_COMB_NA
MRC_SWITCH
,
CS_LDR_AMR _RATEUP_OP
T_SWITCH,
CS_AMR_TRF
O_CMP_SWIT
CH,
CS_COMB_A
MRC_POWER
LDR_SWITCH,
CS_IMMEDIA
TE_RATE_CO
NTROL_OPT_
SWITCH,
CS_TRFO_MU
TI_UL_RATE_
CONTROL_S
WITCH,
CS_RB_AMR_
TFI_CMP_SWI
TCH
Unit:None
Actual Value
Range:CS_AM
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RC_SWITCH,
CS_HANDOVER_TO_UTRA
N_DEFAULT_
CFG_SWITCH,
CS_IUUP_V2_
SUPPORT_SW
ITCH,
CS_VOICE_D
YN_CH_CONF
_SWITCH,
CS_AMRC_W
B_CMP_SWIT
CH,
CS_AMRC_NB
_CMP_SWITC
H,
CS_AMRC_W
B_RATE_ADJ
UST_GRADU
ALLY_SWITC
H,
CS_WAMR_SF
_RECONF_SW
ITCH,CS_COMB_W
AMRC_SWITC
H,
CS_COMB_NA
MRC_SWITCH
,
CS_LDR_AMR
_RATEUP_OP
T_SWITCH,
CS_AMR_TRF
O_CMP_SWIT
CH,
CS_COMB_A
MRC_POWER
LDR_SWITCH,
CS_IMMEDIA
TE_RATE_CO
NTROL_OPT_
SWITCH,
CS_TRFO_MU
TI_UL_RATE_
CONTROL_S
WITCH,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CS_RB_AMR_
TFI_CMP_SWITCH
Default
Value:CS_AM
RC_SWITCH:
0,CS_HANDO
VER_TO_UTR
AN_DEFAULT
_CFG_SWITC
H:
1,CS_IUUP_V2
_SUPPORT_S
WITCH:
0,CS_VOICE_
DYN_CH_CO
NF_SWITCH:
0,CS_AMRC_
WB_CMP_SWI
TCH:
0,CS_AMRC_
NB_CMP_SWI
TCH:
0,CS_AMRC_
WB_RATE_ADJUST_GRAD
UALLY_SWIT
CH:
0,CS_WAMR_
SF_RECONF_S
WITCH:
0,CS_COMB_
WAMRC_SWI
TCH:
0,CS_COMB_
NAMRC_SWITCH:
0,CS_LDR_AM
R_RATEUP_O
PT_SWITCH:
0,CS_AMR_TR
FO_CMP_SWI
TCH:
0,CS_COMB_
AMRC_POWE
RLDR_SWITC
H:
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
function. When
overbookingcongestion is
cleared on the
Iub interface and
the current UE
rate is lower than
the GBR, the
MAC-d
improves the
current UE rate
to the GBR. 0:
This switch is
turned off. 1:
This switch is
turned on. 5)
TPE_ONLY_S
PLIT_SWITCH
Whether to
enable only the
function of
splitting
acknowledged
(ACK) packets
for the RLCTPE. When this
switch is turned
on, the RLC
TPE has only the
function of
splitting ACK
packets. 0: This
switch is turned
off. 1: This
switch is turned
on. 6)
DELAY_MSG_
SWITCH
Whether to
process delayed
messages. When
configuration
messages do not
arrive on time
due to inter-
board
communication
exceptions, the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RLC, MAC-d,
and FP can process the
messages
received within
1280 ms. 0: This
switch is turned
off. 1: This
switch is turned
on. 7)
RACH_SYNC_
CHK_EFFECT
_MODE_SWIT
CH This
parameter is
used to set the
effective way of
RNC
synchronization
detection
function in the
current cell
RACH channel.
0: The switch is
turned off.When RNC
received the
synchronous
frame of the
RACH channel,
the
synchronization
detection
function of the
cell is effective
immediately. 1:
The switch is
turned on. When
the cell is
established, the
synchronization
detection
function of the
cell is effective
immediately. 8)
UEA1_SOFT_E
NCRYPT_SWI
TCH UEA1
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
software
encryptedchannel
switches for
BSC6910. 0:
The switch is
turned off,
UEA1 uses
logical
encryption. 1:
The switch is
turned on,
UEA1 uses
software
encryption. 9)
IUUP_RC_REP
EAT_SWITCH
IuUP Rate
Control Repeat
Switch Whether
the RNC re-
initiates the
IuUP rate
control
procedure after the CN fails to
adjust the
downlink rate on
the user plane. 0:
When the CN
fails to adjust the
downlink rate on
the user plane,
the RNC does
not re-initiate
the IuUP rate
control
procedure. 1:
When the CN
fails to adjust the
downlink rate on
the user plane,
the RNC re-
initiates the
IuUP rate
control
procedure. 10)
BIG_LITTLE_
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
message is
processed onlywhen its length
is valid. 0: This
switch is set to
off. A message
is processed
regardless of
whether its
length is valid or
not. 12)
PS_DATA_TI
ME_DELAY_C
TRL_SWITCH
Delay control
switch for PS
data
transmission.
The delay
control function
discards packets
once congestion
is detected,
thereby
reducing thedelay and
improving the
performance of
delay-sensitive
services. 0: This
switch is turned
off. 1: This
switch is turned
on. 13)
SILENT_INJE
CT_NOISE_DB
G_SWITCH
Whether the
IuUP and FP
noise injection
function is
supported. The
IuUP and FP
noise injection
function is used
to locate the
problem of no
audio. When a
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UE tracing task
is started for aUE performing
voice services,
you can press
any key on the
terminal to start
noise injection.
0: The IuUP and
FP noise
injection
function is
disabled. 1: The
IuUP and FP
noise injection
function is
enabled. 14)
VOICE_CIPHE
R_DBG_SWIT
CH Whether the
MAC-d hyper
frame number
(HFN) change
function is
supported. TheMAC-d HFN
change function
is used to locate
voice service
encryption
problems. When
a UE tracing task
is started for a
UE performing
voice services,
you can press
any key on the
terminal to
change the
MAC-d HFN of
the UE. This
change affects
the voice quality
of the UE. 0: The
MAC-d HFN
change function
is disabled. 1:
The MAC-d
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
layer 2 (L2)
instanceresource check
function. L2
instance
resources
include RLC,
MAC-d, MAC-
c, Fp, Mdc, and
Iu User Plane
(IuUP). When
the L2 instance
resource check
fails, the RRC
automatically
releases the L2
instance
resources. 0:
This switch is
turned off. 1:
This switch is
turned on. 19)
MACD_SCHE
DULE_CHECK
_SWITCHWhether to
enable the
MAC-d
scheduling
check function.
When this
switch is turned
on, the RNC
checks MAC-d
scheduling
groups. The
RNC provides
users with check
information
only when the
MAC-d
scheduling
groups are
abnormal. 0:
This switch is
turned off. 1:
This switch is
turned on. 20)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SERVICE_APP
ERCEIVE_SWITCH Whether to
support the
service
awareness
function. 0: This
switch is turned
off, and the
service
awareness
function is
supported. 1:
This switch is
turned on, and
the service
awareness
function is not
supported. 21)
IUUP_EMPTY
_FRAME_DIS
CARD_SWITC
H Whether to
enable the IuUP
to discard nullframes. When
this switch is
turned on, the
IuUP discards
null frames. 0:
This switch is
turned off. 1:
This switch is
turned on. 22)
PAGING_DET
ECT_SWITCH
Whether to
enable the
paging detection
function on the
DPUb/DPUe
board. Value 0
indicates that the
paging detection
function is
disabled. Value
1 indicates that
the paging
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
detection
function isenabled. 23)
IUUP_INIT_FR
AME_IPTI_ER
R_COMPAT_S
WITCH
Whether the
RNC performs
compatibility
processing on
the incorrect
IPTI
information
element (IE)
contained in the
IuUP
initialization
frame. This
switch takes
effect only on
AMR services
when the TrFO
feature is
validated. 1:This switch is
turned on, the
RNC performs
compatibility
processing on
the incorrect
IPTI IE
contained in the
IuUP
initialization
frame. 0: This
switch is turned
off, the RNC
does not
perform
compatibility
processing on
the incorrect
IPTI IE
contained in the
IuUP
initialization
frame. 24)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
PSDATA_UTR
AN_PAGING_ PREEMPTED_
SWITCH
Whether the
preemption
algorithm takes
effect for the
UTRAN paging
triggered by
downlink PS
data
transmission. 1:
This switch is
turned on. When
the PCH is
congested, the
RNC
preferentially
sends CS paging
messages and
holds back
UTRAN paging
messages
triggered bydownlink PS
data
transmission if
"PagingSwitch"
in the "SET
UDPUCFGDA
TA" is turned
on, and the RNC
preferentially
sends short
message service
(SMS) paging
messages and
holds back
UTRAN paging
messages
triggered by
downlink PS
data
transmission if
"LowSignalPa-
gingSwitch" in
the "SET
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UDPUCFGDA
TA" is turnedon. 0: This
switch is turned
off. The RNC
does not
preferentially
send CS paging
or SMS paging
messages. 25)
KQI_SUBRAC
K_LOAD_CTR
L_SWITCH
Whether flow
control is
implemented
over the KQI
process when
the link between
subracks is
congested. 1:
When this
switch is set to
on, flow control
is implementedover the KQI
process in the
scenario where
the link between
subracks is
congested. 0:
When this
switch is set to
off, flow control
is not
implemented
over the KQI
process in the
scenario where
the link between
subracks is
congested.
Disuse
Statement:In
future versions,
the
SERVICE_APP
ERCEIVE_SWI
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
TCH bit field
value under theProcessSwitch
parameter will
be deleted.
Although the
configuration
interface in this
version supports
delivery and
synchronization
of the bit field
value, the bit
field value is no
longer internally
used. Instead,
the function of
the bit field
value will be
controlled by the
ServiceApperce
iveSwitch
parameter in the
SET
UUPCTRLSWITCH command.
GUI Value
Range:H2F_4B
_SWITCH
(H2F_4B_SWI
TCH),
RLC_SUFI_WI
NDOW_SWIT
CH
(RLC_SUFI_W
INDOW_SWITCH),
RLC_UM_HFN
_INVALID_RR
C_REL_SWIT
CH
(RLC_UM_HF
N_INVALID_R
RC_REL_SWI
TCH),
NO_CONG_RE
SUME_GUAR
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ANTEE_RATE
_SWITCH(NO_CONG_R
ESUME_GUA
RANTEE_RAT
E_SWITCH),
TPE_ONLY_S
PLIT_SWITCH
(TPE_ONLY_S
PLIT_SWITCH
),
DELAY_MSG_
SWITCH
(DELAY_MSG
_SWITCH),
RACH_SYNC_
CHK_EFFECT
_MODE_SWIT
CH
(RACH_SYNC
_CHK_EFFEC
T_MODE_SWI
TCH),
UEA1_SOFT_E
NCRYPT_SWITCH
(UEA1_SOFT_
ENCRYPT_SW
ITCH),
IUUP_RC_REP
EAT_SWITCH
(IUUP_RC_RE
PEAT_SWITC
H),
BIG_LITTLE_
END_CONV_
MSG_LEN_CH
K_SWITCH
(BIG_LITTLE_
END_CONV_
MSG_LEN_CH
K_SWITCH),
INTER_SUBR
ACK_MCAST_
MSG_LEN_CH
K_SWITCH
(INTER_SUBR
ACK_MCAST_
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
MSG_LEN_CH
K_SWITCH),PS_DATA_TI
ME_DELAY_C
TRL_SWITCH
(PS_DATA_TI
ME_DELAY_C
TRL_SWITCH)
,
SILENT_INJE
CT_NOISE_DB
G_SWITCH
(SILENT_INJE
CT_NOISE_DB
G_SWITCH),
VOICE_CIPHE
R_DBG_SWIT
CH
(VOICE_CIPH
ER_DBG_SWI
TCH),
VQI_OPTIMIZ
ATION_SWIT
CH,
DELAY_POLL _TIMER_SWIT
CH
(DELAY_POL
L_TIMER_SWI
TCH),
OVERLOAD_
AMR_DISCAR
D_SWITCH
(OVERLOAD_
AMR_DISCAR
D_SWITCH),
L2_RESOURC
E_CHECK_SW
ITCH
(L2_RESOURC
E_CHECK_SW
ITCH),
MACD_SCHE
DULE_CHECK
_SWITCH
(MACD_SCHE
DULE_CHECK
_SWITCH),
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SERVICE_APP
ERCEIVE_SWITCH
(SERVICE_AP
PERCEIVE_S
WITCH),
IUUP_EMPTY
_FRAME_DIS
CARD_SWITC
H
(IUUP_EMPTY
_FRAME_DIS
CARD_SWITC
H),
PAGING_DET
ECT_SWITCH
(PAGING_DET
ECT_SWITCH)
,
IUUP_INIT_FR
AME_IPTI_ER
R_COMPAT_S
WITCH
(IUUP_INIT_F
RAME_IPTI_ERR_COMPAT_
SWITCH),
PSDATA_UTR
AN_PAGING_
PREEMPTED_
SWITCH
(PSDATA_UT
RAN_PAGING
_PREEMPTED
_SWITCH),
KQI_SUBRAC
K_LOAD_CTR
L_SWITCH
(KQI_SUBRAC
K_LOAD_CTR
L_SWITCH)
Unit:None
Actual Value
Range:H2F_4B
_SWITCH,
RLC_SUFI_WI
NDOW_SWIT
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CH,
RLC_UM_HFN _INVALID_RR
C_REL_SWIT
CH,
NO_CONG_RE
SUME_GUAR
ANTEE_RATE
_SWITCH,
TPE_ONLY_S
PLIT_SWITCH
,
DELAY_MSG_
SWITCH,
RACH_SYNC_
CHK_EFFECT
_MODE_SWIT
CH,
UEA1_SOFT_E
NCRYPT_SWI
TCH,
IUUP_RC_REP
EAT_SWITCH,
BIG_LITTLE_
END_CONV_ MSG_LEN_CH
K_SWITCH,
INTER_SUBR
ACK_MCAST_
MSG_LEN_CH
K_SWITCH,
PS_DATA_TI
ME_DELAY_C
TRL_SWITCH,
SILENT_INJE
CT_NOISE_DB
G_SWITCH,
VOICE_CIPHE
R_DBG_SWIT
CH,
VQI_OPTIMIZ
ATION_SWIT
CH,
DELAY_POLL
_TIMER_SWIT
CH,
OVERLOAD_
AMR_DISCAR
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D_SWITCH,
L2_RESOURCE_CHECK_SW
ITCH,
MACD_SCHE
DULE_CHECK
_SWITCH,
SERVICE_APP
ERCEIVE_SWI
TCH,
IUUP_EMPTY
_FRAME_DIS
CARD_SWITC
H,
PAGING_DET
ECT_SWITCH,
IUUP_INIT_FR
AME_IPTI_ER
R_COMPAT_S
WITCH,
PSDATA_UTR
AN_PAGING_
PREEMPTED_
SWITCH,
KQI_SUBRACK_LOAD_CTR
L_SWITCH
Default
Value:H2F_4B_
SWITCH:
0,RLC_SUFI_
WINDOW_SW
ITCH:
0,RLC_UM_HF
N_INVALID_R
RC_REL_SWITCH:
0,NO_CONG_
RESUME_GU
ARANTEE_RA
TE_SWITCH:
0,TPE_ONLY_
SPLIT_SWITC
H:
0,DELAY_MS
G_SWITCH:
0,RACH_SYN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
C_CHK_EFFE
CT_MODE_SWITCH:
0,UEA1_SOFT
_ENCRYPT_S
WITCH:
0,IUUP_RC_R
EPEAT_SWIT
CH:
0,BIG_LITTLE
_END_CONV_
MSG_LEN_CH
K_SWITCH:
0,INTER_SUB
RACK_MCAS
T_MSG_LEN_
CHK_SWITCH
:
0,PS_DATA_TI
ME_DELAY_C
TRL_SWITCH:
0,SILENT_INJ
ECT_NOISE_D
BG_SWITCH:
0,VOICE_CIPHER_DBG_SWI
TCH:
0,VQI_OPTIMI
ZATION_SWI
TCH:
0,DELAY_POL
L_TIMER_SWI
TCH:
1,OVERLOAD
_AMR_DISCA
RD_SWITCH:
1,L2_RESOUR
CE_CHECK_S
WITCH:
1,MACD_SCH
EDULE_CHEC
K_SWITCH:
1,SERVICE_A
PPERCEIVE_S
WITCH:
1,IUUP_EMPT
Y_FRAME_DI
SCARD_SWIT
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CH:
1,PAGING_DETECT_SWITC
H:
1,IUUP_INIT_
FRAME_IPTI_
ERR_COMPAT
_SWITCH:
0,PSDATA_UT
RAN_PAGING
_PREEMPTED
_SWITCH:
0,KQI_SUBRA
CK_LOAD_CT
RL_SWITCH:1
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ProcessSwitch BSC6910 SET
UDPUCFGDATA
WRFD-010510
WRFD-010504
WRFD-040100
WRFD-010503
WRFD-010502
WRFD-020133
WRFD-020132
WRFD-010501
WRFD-020123
WRFD-010619
WRFD-010301
WRFD-010611
11
3.4/6.8/13.6/27.
2Kbps RRCConnection and
Radio Access
Bearer
Establishment
and Release
Background
QoS Class
Flow Control
Interactive QoS
Class
Streaming QoS
Class
P2P
Downloading
Rate Control
during Busy
Hour
Web browsing
acceleration
Conversational
QoS Class
TCP
Accelerator
CS voice over
HSPA/HSPA+
Paging UE in
Idle,
CELL_PCH,
URA_PCH
State (Type 1)
HSDPA StateTransition
Meaning:1)
H2F_4B_SWITCH Whether to
report the event
4B
measurement
report. This
parameter is
used to set the
conditions for
triggering event
4B reporting
during the H2F
state transition.
0: The event 4B
measurement
report is
reported when
both the
maximum
traffic volume in
the previous 10
ms and the
current traffic
volume aresmaller than the
event 4B-
triggering
threshold. 1: The
event 4B
measurement
report is
reported when
the current
traffic volume is
smaller than the
event 4B-
triggering
threshold. 2)
RLC_SUFI_WI
NDOW_SWIT
CH Whether to
enable the RNC
to handle RLC
SUFI
WINDOW. For
details about
SUFI
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WINDOW, see
the 3GPP TS25.322. 0: This
switch is turned
off, and the RNC
does not handle
RLC SUFI
WINDOW. 1:
This switch is
turned on, and
the RNC
handles RLC
SUFI
WINDOW. 3)
RLC_UM_HFN
_INVALID_RR
C_REL_SWIT
CH Whether to
enable the RLC
in UM mode to
send Status Ind
to the RRC.
When the RLC
in UM mode
adjusts the hyper frame number
(HFN)
quadruple or
more, the RLC
sends Status Ind
to the RRC and
instructs the
RRC to release
connections. 0:
This switch is
turned off. 1:
This switch is
turned on. 4)
NO_CONG_RE
SUME_GUAR
ANTEE_RATE
_SWITCH
Whether to
enable the
guaranteed bit
rate (GBR)
protection and
compensation
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
function. When
overbookingcongestion is
cleared on the
Iub interface and
the current UE
rate is lower than
the GBR, the
MAC-d
improves the
current UE rate
to the GBR. 0:
This switch is
turned off. 1:
This switch is
turned on. 5)
TPE_ONLY_S
PLIT_SWITCH
Whether to
enable only the
function of
splitting
acknowledged
(ACK) packets
for the RLCTPE. When this
switch is turned
on, the RLC
TPE has only the
function of
splitting ACK
packets. 0: This
switch is turned
off. 1: This
switch is turned
on. 6)
DELAY_MSG_
SWITCH
Whether to
process delayed
messages. When
configuration
messages do not
arrive on time
due to inter-
board
communication
exceptions, the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RLC, MAC-d,
and FP can process the
messages
received within
1280 ms. 0: This
switch is turned
off. 1: This
switch is turned
on. 7)
RACH_SYNC_
CHK_EFFECT
_MODE_SWIT
CH This
parameter is
used to set the
effective way of
RNC
synchronization
detection
function in the
current cell
RACH channel.
0: The switch is
turned off.When RNC
received the
synchronous
frame of the
RACH channel,
the
synchronization
detection
function of the
cell is effective
immediately. 1:
The switch is
turned on. When
the cell is
established, the
synchronization
detection
function of the
cell is effective
immediately. 8)
UEA1_SOFT_E
NCRYPT_SWI
TCH UEA1
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
software
encryptedchannel
switches. 0: The
switch is turned
off, UEA1 uses
logical
encryption. 1:
The switch is
turned on,
UEA1 uses
software
encryption. 9)
IUUP_RC_REP
EAT_SWITCH
IuUP Rate
Control Repeat
Switch Whether
the RNC re-
initiates the
IuUP rate
control
procedure after
the CN fails to
adjust thedownlink rate on
the user plane. 0:
When the CN
fails to adjust the
downlink rate on
the user plane,
the RNC does
not re-initiate
the IuUP rate
control
procedure. 1:
When the CN
fails to adjust the
downlink rate on
the user plane,
the RNC re-
initiates the
IuUP rate
control
procedure. 10)
BIG_LITTLE_
END_CONV_
MSG_LEN_CH
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
K_SWITCH
Check MessageLength Upon
Byte Order
Conversion
Whether the
RNC forcibly
checks the
length of a
message when
the message is
converted to
byte order. 0:
The RNC does
not check the
length of a
message when
the message is
converted to
byte order. 1:
The RNC
forcibly checks
the length of a
message when
the message isconverted to
byte order. 11)
INTER_SUBR
ACK_MCAST_
MSG_LEN_CH
K_SWITCH
Whether the
length of a inter-
subrack
multicast
message in an
MBSC is
checked, which
prevents the
system
exception
caused by
messages of
different lengths
1: This switch is
set to on. A
message is
processed only
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
when its length
is valid. 0: Thisswitch is set to
off. A message
is processed
regardless of
whether its
length is valid or
not. 12)
PS_DATA_TI
ME_DELAY_C
TRL_SWITCH
Delay control
switch for PS
data
transmission.
The delay
control function
discards packets
once congestion
is detected,
thereby
reducing the
delay and
improving the performance of
delay-sensitive
services. 0: This
switch is turned
off. 1: This
switch is turned
on. 13)
SILENT_INJE
CT_NOISE_DB
G_SWITCH
Whether the
IuUP and FP
noise injection
function is
supported. The
IuUP and FP
noise injection
function is used
to locate the
problem of no
audio. When a
UE tracing task
is started for a
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UE performing
voice services,you can press
any key on the
terminal to start
noise injection.
0: The IuUP and
FP noise
injection
function is
disabled. 1: The
IuUP and FP
noise injection
function is
enabled. 14)
VOICE_CIPHE
R_DBG_SWIT
CH Whether the
MAC-d hyper
frame number
(HFN) change
function is
supported. The
MAC-d HFN
change functionis used to locate
voice service
encryption
problems. When
a UE tracing task
is started for a
UE performing
voice services,
you can press
any key on the
terminal to
change the
MAC-d HFN of
the UE. This
change affects
the voice quality
of the UE. 0: The
MAC-d HFN
change function
is disabled. 1:
The MAC-d
HFN change
function is
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
enabled. 15)
VQI_OPTIMIZATION_SWIT
CH None. 16)
DELAY_POLL
_TIMER_SWIT
CH Whether to
increase the
value of POLL
TIMER. When
the CPU load of
the UP process is
heavy, the RNC
automatically
prolongs the
POLL TIMER
to reduce the
times RLC
status reports are
sent. 0: This
switch is turned
off. 1: This
switch is turned
on. 17)
OVERLOAD_ AMR_DISCAR
D_SWITCH
Whether to
trigger the AMR
packet loss
function when
the UP process is
overloaded.
When the CPU
usage of the UP
process exceeds
the alarm
threshold, AMR
packet loss is
triggered. 0:
This switch is
turned off. 1:
This switch is
turned on. 18)
L2_RESOURC
E_CHECK_SW
ITCH Whether
to enable the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
layer 2 (L2)
instanceresource check
function. L2
instance
resources
include RLC,
MAC-d, MAC-
c, Fp, Mdc, and
Iu User Plane
(IuUP). When
the L2 instance
resource check
fails, the RRC
automatically
releases the L2
instance
resources. 0:
This switch is
turned off. 1:
This switch is
turned on. 19)
MACD_SCHE
DULE_CHECK
_SWITCHWhether to
enable the
MAC-d
scheduling
check function.
When this
switch is turned
on, the RNC
checks MAC-d
scheduling
groups. The
RNC provides
users with check
information
only when the
MAC-d
scheduling
groups are
abnormal. 0:
This switch is
turned off. 1:
This switch is
turned on. 20)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SERVICE_APP
ERCEIVE_SWITCH Whether to
support the
service
awareness
function. 0: This
switch is turned
off, and the
service
awareness
function is
supported. 1:
This switch is
turned on, and
the service
awareness
function is not
supported. 21)
IUUP_EMPTY
_FRAME_DIS
CARD_SWITC
H Whether to
enable the IuUP
to discard nullframes. When
this switch is
turned on, the
IuUP discards
null frames. 0:
This switch is
turned off. 1:
This switch is
turned on. 22)
PAGING_DET
ECT_SWITCH
Whether to
enable the
paging detection
function on the
GPU board.
Value 0
indicates that the
paging detection
function is
disabled. Value
1 indicates that
the paging
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
detection
function isenabled. 23)
IUUP_INIT_FR
AME_IPTI_ER
R_COMPAT_S
WITCH
Whether the
RNC performs
compatibility
processing on
the incorrect
IPTI
information
element (IE)
contained in the
IuUP
initialization
frame. This
switch takes
effect only on
AMR services
when the TrFO
feature is
validated. 1:This switch is
turned on, the
RNC performs
compatibility
processing on
the incorrect
IPTI IE
contained in the
IuUP
initialization
frame. 0: This
switch is turned
off, the RNC
does not
perform
compatibility
processing on
the incorrect
IPTI IE
contained in the
IuUP
initialization
frame. 24)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
PSDATA_UTR
AN_PAGING_ PREEMPTED_
SWITCH
Whether the
preemption
algorithm takes
effect for the
UTRAN paging
triggered by
downlink PS
data
transmission. 1:
This switch is
turned on. When
the PCH is
congested, the
RNC
preferentially
sends CS paging
messages and
holds back
UTRAN paging
messages
triggered bydownlink PS
data
transmission if
"PagingSwitch"
in the "SET
UDPUCFGDA
TA" is turned
on, and the RNC
preferentially
sends short
message service
(SMS) paging
messages and
holds back
UTRAN paging
messages
triggered by
downlink PS
data
transmission if
"LowSignalPa-
gingSwitch" in
the "SET
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UDPUCFGDA
TA" is turnedon. 0: This
switch is turned
off. The RNC
does not
preferentially
send CS paging
or SMS paging
messages. 25)
KQI_SUBRAC
K_LOAD_CTR
L_SWITCH
Whether flow
control is
implemented
over the KQI
process when
the link between
subracks is
congested. 1:
When this
switch is set to
on, flow control
is implementedover the KQI
process in the
scenario where
the link between
subracks is
congested. 0:
When this
switch is set to
off, flow control
is not
implemented
over the KQI
process in the
scenario where
the link between
subracks is
congested.
Disuse
Statement:In
future versions,
the
SERVICE_APP
ERCEIVE_SWI
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
TCH bit field
value under theProcessSwitch
parameter will
be deleted.
Although the
configuration
interface in this
version supports
delivery and
synchronization
of the bit field
value, the bit
field value is no
longer internally
used. Instead,
the function of
the bit field
value will be
controlled by the
ServiceApperce
iveSwitch
parameter in the
SET
UUPCTRLSWITCH command.
GUI Value
Range:H2F_4B
_SWITCH
(H2F_4B_SWI
TCH),
RLC_SUFI_WI
NDOW_SWIT
CH
(RLC_SUFI_W
INDOW_SWITCH),
RLC_UM_HFN
_INVALID_RR
C_REL_SWIT
CH
(RLC_UM_HF
N_INVALID_R
RC_REL_SWI
TCH),
NO_CONG_RE
SUME_GUAR
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ANTEE_RATE
_SWITCH(NO_CONG_R
ESUME_GUA
RANTEE_RAT
E_SWITCH),
TPE_ONLY_S
PLIT_SWITCH
(TPE_ONLY_S
PLIT_SWITCH
),
DELAY_MSG_
SWITCH
(DELAY_MSG
_SWITCH),
RACH_SYNC_
CHK_EFFECT
_MODE_SWIT
CH
(RACH_SYNC
_CHK_EFFEC
T_MODE_SWI
TCH),
UEA1_SOFT_E
NCRYPT_SWITCH
(UEA1_SOFT_
ENCRYPT_SW
ITCH),
IUUP_RC_REP
EAT_SWITCH
(IUUP_RC_RE
PEAT_SWITC
H),
BIG_LITTLE_
END_CONV_
MSG_LEN_CH
K_SWITCH
(BIG_LITTLE_
END_CONV_
MSG_LEN_CH
K_SWITCH),
INTER_SUBR
ACK_MCAST_
MSG_LEN_CH
K_SWITCH
(INTER_SUBR
ACK_MCAST_
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
MSG_LEN_CH
K_SWITCH),PS_DATA_TI
ME_DELAY_C
TRL_SWITCH
(PS_DATA_TI
ME_DELAY_C
TRL_SWITCH)
,
SILENT_INJE
CT_NOISE_DB
G_SWITCH
(SILENT_INJE
CT_NOISE_DB
G_SWITCH),
VOICE_CIPHE
R_DBG_SWIT
CH
(VOICE_CIPH
ER_DBG_SWI
TCH),
VQI_OPTIMIZ
ATION_SWIT
CH,
DELAY_POLL _TIMER_SWIT
CH
(DELAY_POL
L_TIMER_SWI
TCH),
OVERLOAD_
AMR_DISCAR
D_SWITCH
(OVERLOAD_
AMR_DISCAR
D_SWITCH),
L2_RESOURC
E_CHECK_SW
ITCH
(L2_RESOURC
E_CHECK_SW
ITCH),
MACD_SCHE
DULE_CHECK
_SWITCH
(MACD_SCHE
DULE_CHECK
_SWITCH),
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SERVICE_APP
ERCEIVE_SWITCH
(SERVICE_AP
PERCEIVE_S
WITCH),
IUUP_EMPTY
_FRAME_DIS
CARD_SWITC
H
(IUUP_EMPTY
_FRAME_DIS
CARD_SWITC
H),
PAGING_DET
ECT_SWITCH
(PAGING_DET
ECT_SWITCH)
,
IUUP_INIT_FR
AME_IPTI_ER
R_COMPAT_S
WITCH
(IUUP_INIT_F
RAME_IPTI_ERR_COMPAT_
SWITCH),
PSDATA_UTR
AN_PAGING_
PREEMPTED_
SWITCH
(PSDATA_UT
RAN_PAGING
_PREEMPTED
_SWITCH),
KQI_SUBRAC
K_LOAD_CTR
L_SWITCH
(KQI_SUBRAC
K_LOAD_CTR
L_SWITCH)
Unit:None
Actual Value
Range:H2F_4B
_SWITCH,
RLC_SUFI_WI
NDOW_SWIT
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CH,
RLC_UM_HFN _INVALID_RR
C_REL_SWIT
CH,
NO_CONG_RE
SUME_GUAR
ANTEE_RATE
_SWITCH,
TPE_ONLY_S
PLIT_SWITCH
,
DELAY_MSG_
SWITCH,
RACH_SYNC_
CHK_EFFECT
_MODE_SWIT
CH,
UEA1_SOFT_E
NCRYPT_SWI
TCH,
IUUP_RC_REP
EAT_SWITCH,
BIG_LITTLE_
END_CONV_ MSG_LEN_CH
K_SWITCH,
INTER_SUBR
ACK_MCAST_
MSG_LEN_CH
K_SWITCH,
PS_DATA_TI
ME_DELAY_C
TRL_SWITCH,
SILENT_INJE
CT_NOISE_DB
G_SWITCH,
VOICE_CIPHE
R_DBG_SWIT
CH,
VQI_OPTIMIZ
ATION_SWIT
CH,
DELAY_POLL
_TIMER_SWIT
CH,
OVERLOAD_
AMR_DISCAR
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D_SWITCH,
L2_RESOURCE_CHECK_SW
ITCH,
MACD_SCHE
DULE_CHECK
_SWITCH,
SERVICE_APP
ERCEIVE_SWI
TCH,
IUUP_EMPTY
_FRAME_DIS
CARD_SWITC
H,
PAGING_DET
ECT_SWITCH,
IUUP_INIT_FR
AME_IPTI_ER
R_COMPAT_S
WITCH,
PSDATA_UTR
AN_PAGING_
PREEMPTED_
SWITCH,
KQI_SUBRACK_LOAD_CTR
L_SWITCH
Default
Value:H2F_4B_
SWITCH:
0,RLC_SUFI_
WINDOW_SW
ITCH:
0,RLC_UM_HF
N_INVALID_R
RC_REL_SWITCH:
0,NO_CONG_
RESUME_GU
ARANTEE_RA
TE_SWITCH:
0,TPE_ONLY_
SPLIT_SWITC
H:
0,DELAY_MS
G_SWITCH:
0,RACH_SYN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
C_CHK_EFFE
CT_MODE_SWITCH:
0,UEA1_SOFT
_ENCRYPT_S
WITCH:
0,IUUP_RC_R
EPEAT_SWIT
CH:
0,BIG_LITTLE
_END_CONV_
MSG_LEN_CH
K_SWITCH:
0,INTER_SUB
RACK_MCAS
T_MSG_LEN_
CHK_SWITCH
:
0,PS_DATA_TI
ME_DELAY_C
TRL_SWITCH:
0,SILENT_INJ
ECT_NOISE_D
BG_SWITCH:
0,VOICE_CIPHER_DBG_SWI
TCH:
0,VQI_OPTIMI
ZATION_SWI
TCH:
0,DELAY_POL
L_TIMER_SWI
TCH:
1,OVERLOAD
_AMR_DISCA
RD_SWITCH:
1,L2_RESOUR
CE_CHECK_S
WITCH:
1,MACD_SCH
EDULE_CHEC
K_SWITCH:
1,SERVICE_A
PPERCEIVE_S
WITCH:
1,IUUP_EMPT
Y_FRAME_DI
SCARD_SWIT
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CH:
1,PAGING_DETECT_SWITC
H:
1,IUUP_INIT_
FRAME_IPTI_
ERR_COMPAT
_SWITCH:
0,PSDATA_UT
RAN_PAGING
_PREEMPTED
_SWITCH:
0,KQI_SUBRA
CK_LOAD_CT
RL_SWITCH:1
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CSVoiceChlTy
pe
BSC6900 SET
UFRCCHLTYPEPARA
WRFD-010619
WRFD-010613
CS voice over
HSPA/HSPA+AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:Chann
el type of CSvoice services.
DCH indicates
that both uplink
and downlink
are preferably
carried on DCH.
HSPA indicates
that uplink is
preferably
carried on E-
DCH, and
downlink is
preferably
carried on HS-
DSCH. In
particular, both
uplink and
downlink will be
carried on DCH
if either uplink
cannot be
carried on E-
DCH or downlink cannot
be carried on
HS-DSCH.
GUI Value
Range:DCH
(UL_DCH,DL_
DCH), HSPA
(UL_EDCH,DL
_HSDSCH)
Unit:None
Actual Value
Range:DCH,
HSPA
Default
Value:DCH
(UL_DCH,DL_
DCH)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CSVoiceChlTy
pe
BSC6910 SET
UFRCCHLTYPEPARA
WRFD-010619
WRFD-010613
CS voice over
HSPA/HSPA+AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:Chann
el type of CSvoice services.
DCH indicates
that both uplink
and downlink
are preferably
carried on DCH.
HSPA indicates
that uplink is
preferably
carried on E-
DCH, and
downlink is
preferably
carried on HS-
DSCH. In
particular, both
uplink and
downlink will be
carried on DCH
if either uplink
cannot be
carried on E-
DCH or downlink cannot
be carried on
HS-DSCH.
GUI Value
Range:DCH
(UL_DCH,DL_
DCH), HSPA
(UL_EDCH,DL
_HSDSCH)
Unit:None
Actual Value
Range:DCH,
HSPA
Default
Value:DCH
(UL_DCH,DL_
DCH)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
NBMLdcAlgoS
witch
BSC6900 ADD
UCELLALGOSWITCH
MOD
UCELLALGOS
WITCH
WRFD-151203
WRFD-020106
WRFD-150231
WRFD-150219
WRFD-150216
WRFD-150217
WRFD-150215
WRFD-010610
03
WRFD-020102
WRFD-140223
WRFD-150236
WRFD-020101
WRFD-140226
WRFD-020107
WRFD-020104
WRFD-020105
WRFD-020126
WRFD-010612
02
WRFD-020129
WRFD-010626
WRFD-010627
WRFD-020103
WRFD-010660
WRFD-010661
WRFD-010662
WRFD-010663WRFD-010665
WRFD-140102
WRFD-010660
04
WRFD-010616
06
WRFD-010660
02
WRFD-010660
03
Camping
Strategy Switchfor Mass Event
Load
Reshuffling
RIM Based
UMTS Target
Cell Selection
for LTE
Coverage Based
PS Redirection
from UMTS to
LTE
Load Based PS
Redirection
from UMTS to
LTE
Load Based PS
Handover from
UMTS to LTE
SRVCC from
LTE to UMTS
with PSHandover
HSDPA
Admission
Control
Load
Measurement
MOCN Cell
Resource
Demarcation
Load Based
Dynamic
Adjustment of
PCPICH
Admission
Control
Fast Return
from UMTS to
LTE
Overload
Control
Meaning:Wheth
er to enable thealgorithms
related to cell
load control.
Selecting a
switch enables
the
corresponding
algorithm and
clearing a switch
disables the
corresponding
algorithm. 1.
INTRA_FREQ
UENCY_LDB:
Whether to
enable the cell
breathing
algorithm. This
algorithm
adjusts P-
CPICH transmit
power of a cell
based on thedownlink TCP
load to achieve
load balancing
between intra-
frequency cells.
This algorithm
automatically
becomes invalid
when the load-
based dynamic
P-CPICH
transmit power
adjustment
algorithm
(controlled by
the
DLLOAD_BAS
ED_PCPICH_P
WR_ADJ_SWI
TCH switch)
takes effect. 2.
PUC: Whether
to enable the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WRFD-010660
01WRFD-010616
05
WRFD-150220
WRFD-010616
01
WRFD-010616
03
WRFD-010616
02
WRFD-140217
WRFD-010616
04
WRFD-010616
WRFD-010616
08
WRFD-140218
Intra Frequency
Load BalancePotential User
Control
Mobility
Between UMTS
and LTE Phase 1
HSUPA
Admission
Control
PS Service
Redirection
from UMTS to
LTE
MBMS FLC
(Frequency
Layer
Convergence)/
FLD(Frequency
Layer
Dispersion)
FACH
TransmissionSharing for
MBMS
Inter Frequency
Load Balance
MBMS Phase 2
MBMS over Iur
Dynamic Power
Estimation for
MTCH
MSCHScheduling
MBMS Channel
Audience
Rating Statistics
CS Fallback
Guarantee for
LTE Emergency
Calls
Inter-Frequency
Neighboring
Cell Selection
Potential User
Control (PUC)algorithm. This
algorithm
adjusts cell
selection and
reselection
parameters
based on the cell
load to enable
UEs to reselect
lightly loaded
cells. 3.
UL_UU_OLC:
Whether to
enable the
uplink overload
control (OLC)
algorithm.
When the uplink
power is
overloaded in a
cell, this
algorithm
alleviates theuplink load by
using quick
transport format
(TF) restriction,
distributing best
effort (BE)
service to
common
channels, or
releasing UEs.
4.
DL_UU_OLC:
Whether to
enable the
downlink OLC
algorithm.
When the
downlink power
is overloaded in
a cell, this
algorithm
alleviates the
downlink load
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
for MBMS PTP
UsersStreaming
Service on
MBMS
MBMS P2P
over HSDPA
MBMS
Admission
Enhancement
MBMS
Enhanced
Broadcast Mode
MBMS
Transport
Resource
Management
Coverage Based
PS Handover
from UMTS to
LTE
MBMS
Broadcast Mode
MBMS Load
Control
MBMS
Admission
Control
Inter-Frequency
Load Balancing
Based on
Configurable
Load Threshold
MBMS Soft/
Selective
Combining
MBMS
Introduction
Package
16/32/64/128Kb
ps Channel Rate
on MBMS
Service-Based
PS Handover
by using quick
TF restriction,distributing BE
services to
common
channels,
releasing UEs,
or reconfiguring
the maximum
transmit power
of FACHs. 5.
UL_UU_LDR:
Whether to
enable the
uplink load
reshuffling
(LDR)
algorithm.
When the uplink
load is heavy in
a cell, this
algorithm
alleviates the
uplink load by
using load- based inter-
frequency
handovers, BE
service rate
reduction,
uncontrollable
real-time service
QoS
renegotiation,
load-based CS/
PS inter-RAT
handovers, and
AMR service
rate reduction. 6.
DL_UU_LDR:
Whether to
enable the
downlink LDR
algorithm.
When the
downlink load is
heavy in a cell,
this algorithm
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
from UMTS to
LTEalleviates the
downlink load by using load-
based inter-
frequency
handovers, BE
service rate
reduction,
uncontrollable
real-time service
QoS
renegotiation,
load-based CS/
PS inter-RAT
handovers,
AMR service
rate reduction,
and MBMS
power
restriction. 7.
OLC_EVENT
MEAS:
Whether to
enable OLC
eventmeasurement. 8.
CELL_CODE_
LDR: Whether
to enable cell
code reshuffling
algorithm. In the
event of code
resource
overuse, this
algorithm
alleviates the
code resource
overuse by using
BE service rate
reduction, code
tree reshuffling,
and load-based
inter-frequency
handovers. 9.
CELL_CREDIT
_LDR: Whether
to enable the cell
credit
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
reshuffling
algorithm. In theevent of cell
credit overuse,
this algorithm
alleviates the
credit overuse
by using load-
based inter-
frequency
handovers, BE
service rate
reduction,
uncontrollable
real-time service
QoS
renegotiation,
and load-based
CS/PS inter-
RAT handovers.
10.
UL_INTRA_FR
EQUENCY_UL
B: Whether to
enable RTWP- based intra-
frequency load
balancing
algorithm. This
algorithm
adjusts P-
CPICH transmit
power of a cell
based on the
RTWP load to
achieve load
balancing
between intra-
frequency cells.
This algorithm
automatically
becomes invalid
when the load-
based dynamic
P-CPICH
transmit power
adjustment
algorithm
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
(controlled by
theDLLOAD_BAS
ED_PCPICH_P
WR_ADJ_SWI
TCH switch)
takes effect. 11.
UL_UU_CLB:
Whether to
enable the
uplink load-
based CLB
algorithm. This
algorithm
determines
whether a cell
enters the CLB
state by the
uplink load on
the air interface.
If a cell is in the
CLB state,
measurement-
based inter-
frequencyhandovers are
triggered
periodically to
achieve load
balancing
between inter-
frequency cells.
12.
DL_UU_CLB:
Whether to
enable the
downlink load-
based CLB
algorithm. This
algorithm
determines
whether a cell
enters the CLB
state by the
downlink load
on the air
interface. If a
cell is in the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CLB state,
measurement- based inter-
frequency
handovers are
triggered
periodically to
achieve load
balancing
between inter-
frequency cells.
13.
CELL_CODE_
CLB: Whether
to enable code
resource-based
CLB algorithm.
This algorithm
determines
whether a cell
enters the CLB
state by the code
resource usage.
If a cell is in the
CLB state,measurement-
based inter-
frequency
handovers are
triggered
periodically to
achieve load
balancing
between inter-
frequency cells.
14.
CELL_CREDIT
_CLB: Whether
to enable credit-
based CLB
algorithm. This
algorithm
determines
whether a cell
enters the CLB
state by the
credit resource
usage. If a cell is
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
in the CLB state,
measurement- based inter-
frequency
handovers are
triggered
periodically to
achieve load
balancing
between inter-
frequency cells.
15.
DLLOAD_BAS
ED_PCPICH_P
WR_ADJ_SWI
TCH: Whether
to enable
downlink load-
based dynamic
primary
common pilot
channel (P-
CPICH) power
adjustment
algorithm. Thisalgorithm
adjusts the P-
CPICH transmit
power by the
downlink non-
HSPA power
load to reduce
the downlink
non-HSPA
power load. If
this algorithm
takes effect,
other enabled
algorithms for
intra-frequency
load balancing
(based on TCP
or RTWP)
automatically
become invalid.
16.
ADAPTIVE_R
ACH: Function
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
switch for the
adaptive RACHfeature. When
this switch is
turned on, this
feature is
activated. In this
case, the RNC
adjusts the
random access
parameters
based on the
random access
state and on the
uplink power
load of the target
cell. When this
switch is turned
off, this feature
is deactivated.
17.
ACK_PRACH_
PREAM_MEA
S: Whether to
measure thenumber of
acknowledged
PRACH
preambles.
When this
switch is turned
on, the RNC
measures the
number of
acknowledged
PRACH
preambles.
When this
switch is turned
off, the RNC
does not
measure the
number of
acknowledged
PRACH
preambles. 18.
CAMPING_ST
RATEGY_SWI
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
TCH: Whether
to enable thecamping policy
switching
function when
traffic is heavy.
This is a
function switch
for the function.
When the switch
is turned on, the
camping policy
switching
function is
enabled if traffic
is heavy in the
entire network.
Then, the target
cell is no longer
a preferred
camping cell for
the UE in
question, but a
random
camping cell.GUI Value
Range:INTRA_
FREQUENCY_
LDB, PUC,
UL_UU_LDR,
DL_UU_LDR,
UL_UU_OLC,
DL_UU_OLC,
OLC_EVENT
MEAS,
CELL_CODE_ LDR,
CELL_CREDIT
_LDR,
UL_INTRA_FR
EQUENCY_UL
B,
UL_UU_CLB,
DL_UU_CLB,
CELL_CODE_
CLB,
CELL_CREDIT
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
_CLB,
DLLOAD_BASED_PCPICH_P
WR_ADJ_SWI
TCH,
ADAPTIVE_R
ACH,
ACK_PRACH_
PREAM_MEA
S,
CAMPING_ST
RATEGY_SWI
TCH
Unit:None
Actual Value
Range:INTRA_
FREQUENCY_
LDB, PUC,
UL_UU_LDR,
DL_UU_LDR,
UL_UU_OLC,
DL_UU_OLC,
OLC_EVENT
MEAS,
CELL_CODE_
LDR,
CELL_CREDIT
_LDR,
UL_INTRA_FR
EQUENCY_UL
B,
UL_UU_CLB,
DL_UU_CLB,
CELL_CODE_
CLB,
CELL_CREDIT _CLB,
DLLOAD_BAS
ED_PCPICH_P
WR_ADJ_SWI
TCH,
ADAPTIVE_R
ACH,
ACK_PRACH_
PREAM_MEA
S,
CAMPING_ST
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RATEGY_SWI
TCHDefault
Value:INTRA_
FREQUENCY_
LDB:0,PUC:
0,UL_UU_LDR
:
0,DL_UU_LDR
:
0,UL_UU_OLC
:
0,DL_UU_OLC
:
0,OLC_EVENT
MEAS:
0,CELL_CODE
_LDR:
0,CELL_CRED
IT_LDR:
0,UL_INTRA_
FREQUENCY_
ULB:
0,UL_UU_CLB
:0,DL_UU_CLB
:
0,CELL_CODE
_CLB:
0,CELL_CRED
IT_CLB:
0,DLLOAD_B
ASED_PCPICH
_PWR_ADJ_S
WITCH:
0,ADAPTIVE_ RACH:
0,ACK_PRAC
H_PREAM_M
EAS:
0,CAMPING_S
TRATEGY_S
WITCH:0
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
NBMLdcAlgoS
witch
BSC6910 ADD
UCELLALGOSWITCH
MOD
UCELLALGOS
WITCH
WRFD-151203
WRFD-020106
WRFD-150231
WRFD-150219
WRFD-150216
WRFD-150217
WRFD-150215
WRFD-010610
03
WRFD-020102
WRFD-140223
WRFD-150236
WRFD-020101
WRFD-140226
WRFD-020107
WRFD-020104
WRFD-020105
WRFD-020126
WRFD-010612
02
WRFD-020129
WRFD-010626
WRFD-010627
WRFD-020103
WRFD-010660
WRFD-010661
WRFD-010662
WRFD-010663WRFD-010665
WRFD-140102
WRFD-010660
04
WRFD-010616
06
WRFD-010660
02
WRFD-010660
03
Camping
Strategy Switchfor Mass Event
Load
Reshuffling
RIM Based
UMTS Target
Cell Selection
for LTE
Coverage Based
PS Redirection
from UMTS to
LTE
Load Based PS
Redirection
from UMTS to
LTE
Load Based PS
Handover from
UMTS to LTE
SRVCC from
LTE to UMTS
with PSHandover
HSDPA
Admission
Control
Load
Measurement
MOCN Cell
Resource
Demarcation
Load Based
Dynamic
Adjustment of
PCPICH
Admission
Control
Fast Return
from UMTS to
LTE
Overload
Control
Meaning:Wheth
er to enable thealgorithms
related to cell
load control.
Selecting a
switch enables
the
corresponding
algorithm and
clearing a switch
disables the
corresponding
algorithm. 1.
INTRA_FREQ
UENCY_LDB:
Whether to
enable the cell
breathing
algorithm. This
algorithm
adjusts P-
CPICH transmit
power of a cell
based on thedownlink TCP
load to achieve
load balancing
between intra-
frequency cells.
This algorithm
automatically
becomes invalid
when the load-
based dynamic
P-CPICH
transmit power
adjustment
algorithm
(controlled by
the
DLLOAD_BAS
ED_PCPICH_P
WR_ADJ_SWI
TCH switch)
takes effect. 2.
PUC: Whether
to enable the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WRFD-010660
01WRFD-010616
05
WRFD-150220
WRFD-010616
01
WRFD-010616
03
WRFD-010616
02
WRFD-140217
WRFD-010616
04
WRFD-010616
WRFD-010616
08
WRFD-140218
Intra Frequency
Load BalancePotential User
Control
Mobility
Between UMTS
and LTE Phase 1
HSUPA
Admission
Control
PS Service
Redirection
from UMTS to
LTE
MBMS FLC
(Frequency
Layer
Convergence)/
FLD(Frequency
Layer
Dispersion)
FACH
TransmissionSharing for
MBMS
Inter Frequency
Load Balance
MBMS Phase 2
MBMS over Iur
Dynamic Power
Estimation for
MTCH
MSCHScheduling
MBMS Channel
Audience
Rating Statistics
CS Fallback
Guarantee for
LTE Emergency
Calls
Inter-Frequency
Neighboring
Cell Selection
Potential User
Control (PUC)algorithm. This
algorithm
adjusts cell
selection and
reselection
parameters
based on the cell
load to enable
UEs to reselect
lightly loaded
cells. 3.
UL_UU_OLC:
Whether to
enable the
uplink overload
control (OLC)
algorithm.
When the uplink
power is
overloaded in a
cell, this
algorithm
alleviates theuplink load by
using quick
transport format
(TF) restriction,
distributing best
effort (BE)
service to
common
channels, or
releasing UEs.
4.
DL_UU_OLC:
Whether to
enable the
downlink OLC
algorithm.
When the
downlink power
is overloaded in
a cell, this
algorithm
alleviates the
downlink load
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
for MBMS PTP
UsersStreaming
Service on
MBMS
MBMS P2P
over HSDPA
MBMS
Admission
Enhancement
MBMS
Enhanced
Broadcast Mode
MBMS
Transport
Resource
Management
Coverage Based
PS Handover
from UMTS to
LTE
MBMS
Broadcast Mode
MBMS Load
Control
MBMS
Admission
Control
Inter-Frequency
Load Balancing
Based on
Configurable
Load Threshold
MBMS Soft/
Selective
Combining
MBMS
Introduction
Package
16/32/64/128Kb
ps Channel Rate
on MBMS
Service-Based
PS Handover
by using quick
TF restriction,distributing BE
services to
common
channels,
releasing UEs,
or reconfiguring
the maximum
transmit power
of FACHs. 5.
UL_UU_LDR:
Whether to
enable the
uplink load
reshuffling
(LDR)
algorithm.
When the uplink
load is heavy in
a cell, this
algorithm
alleviates the
uplink load by
using load- based inter-
frequency
handovers, BE
service rate
reduction,
uncontrollable
real-time service
QoS
renegotiation,
load-based CS/
PS inter-RAT
handovers, and
AMR service
rate reduction. 6.
DL_UU_LDR:
Whether to
enable the
downlink LDR
algorithm.
When the
downlink load is
heavy in a cell,
this algorithm
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
from UMTS to
LTEalleviates the
downlink load by using load-
based inter-
frequency
handovers, BE
service rate
reduction,
uncontrollable
real-time service
QoS
renegotiation,
load-based CS/
PS inter-RAT
handovers,
AMR service
rate reduction,
and MBMS
power
restriction. 7.
OLC_EVENT
MEAS:
Whether to
enable OLC
eventmeasurement. 8.
CELL_CODE_
LDR: Whether
to enable cell
code reshuffling
algorithm. In the
event of code
resource
overuse, this
algorithm
alleviates the
code resource
overuse by using
BE service rate
reduction, code
tree reshuffling,
and load-based
inter-frequency
handovers. 9.
CELL_CREDIT
_LDR: Whether
to enable the cell
credit
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
reshuffling
algorithm. In theevent of cell
credit overuse,
this algorithm
alleviates the
credit overuse
by using load-
based inter-
frequency
handovers, BE
service rate
reduction,
uncontrollable
real-time service
QoS
renegotiation,
and load-based
CS/PS inter-
RAT handovers.
10.
UL_INTRA_FR
EQUENCY_UL
B: Whether to
enable RTWP- based intra-
frequency load
balancing
algorithm. This
algorithm
adjusts P-
CPICH transmit
power of a cell
based on the
RTWP load to
achieve load
balancing
between intra-
frequency cells.
This algorithm
automatically
becomes invalid
when the load-
based dynamic
P-CPICH
transmit power
adjustment
algorithm
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
(controlled by
theDLLOAD_BAS
ED_PCPICH_P
WR_ADJ_SWI
TCH switch)
takes effect. 11.
UL_UU_CLB:
Whether to
enable the
uplink load-
based CLB
algorithm. This
algorithm
determines
whether a cell
enters the CLB
state by the
uplink load on
the air interface.
If a cell is in the
CLB state,
measurement-
based inter-
frequencyhandovers are
triggered
periodically to
achieve load
balancing
between inter-
frequency cells.
12.
DL_UU_CLB:
Whether to
enable the
downlink load-
based CLB
algorithm. This
algorithm
determines
whether a cell
enters the CLB
state by the
downlink load
on the air
interface. If a
cell is in the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CLB state,
measurement- based inter-
frequency
handovers are
triggered
periodically to
achieve load
balancing
between inter-
frequency cells.
13.
CELL_CODE_
CLB: Whether
to enable code
resource-based
CLB algorithm.
This algorithm
determines
whether a cell
enters the CLB
state by the code
resource usage.
If a cell is in the
CLB state,measurement-
based inter-
frequency
handovers are
triggered
periodically to
achieve load
balancing
between inter-
frequency cells.
14.
CELL_CREDIT
_CLB: Whether
to enable credit-
based CLB
algorithm. This
algorithm
determines
whether a cell
enters the CLB
state by the
credit resource
usage. If a cell is
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
in the CLB state,
measurement- based inter-
frequency
handovers are
triggered
periodically to
achieve load
balancing
between inter-
frequency cells.
15.
DLLOAD_BAS
ED_PCPICH_P
WR_ADJ_SWI
TCH: Whether
to enable
downlink load-
based dynamic
primary
common pilot
channel (P-
CPICH) power
adjustment
algorithm. Thisalgorithm
adjusts the P-
CPICH transmit
power by the
downlink non-
HSPA power
load to reduce
the downlink
non-HSPA
power load. If
this algorithm
takes effect,
other enabled
algorithms for
intra-frequency
load balancing
(based on TCP
or RTWP)
automatically
become invalid.
16.
ADAPTIVE_R
ACH: Function
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
switch for the
adaptive RACHfeature. When
this switch is
turned on, this
feature is
activated. In this
case, the RNC
adjusts the
random access
parameters
based on the
random access
state and on the
uplink power
load of the target
cell. When this
switch is turned
off, this feature
is deactivated.
17.
ACK_PRACH_
PREAM_MEA
S: Whether to
measure thenumber of
acknowledged
PRACH
preambles.
When this
switch is turned
on, the RNC
measures the
number of
acknowledged
PRACH
preambles.
When this
switch is turned
off, the RNC
does not
measure the
number of
acknowledged
PRACH
preambles. 18.
CAMPING_ST
RATEGY_SWI
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
TCH: Whether
to enable thecamping policy
switching
function when
traffic is heavy.
This is a
function switch
for the function.
When the switch
is turned on, the
camping policy
switching
function is
enabled if traffic
is heavy in the
entire network.
Then, the target
cell is no longer
a preferred
camping cell for
the UE in
question, but a
random
camping cell.GUI Value
Range:INTRA_
FREQUENCY_
LDB, PUC,
UL_UU_LDR,
DL_UU_LDR,
UL_UU_OLC,
DL_UU_OLC,
OLC_EVENT
MEAS,
CELL_CODE_ LDR,
CELL_CREDIT
_LDR,
UL_INTRA_FR
EQUENCY_UL
B,
UL_UU_CLB,
DL_UU_CLB,
CELL_CODE_
CLB,
CELL_CREDIT
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
_CLB,
DLLOAD_BASED_PCPICH_P
WR_ADJ_SWI
TCH,
ADAPTIVE_R
ACH,
ACK_PRACH_
PREAM_MEA
S,
CAMPING_ST
RATEGY_SWI
TCH
Unit:None
Actual Value
Range:INTRA_
FREQUENCY_
LDB, PUC,
UL_UU_LDR,
DL_UU_LDR,
UL_UU_OLC,
DL_UU_OLC,
OLC_EVENT
MEAS,
CELL_CODE_
LDR,
CELL_CREDIT
_LDR,
UL_INTRA_FR
EQUENCY_UL
B,
UL_UU_CLB,
DL_UU_CLB,
CELL_CODE_
CLB,
CELL_CREDIT _CLB,
DLLOAD_BAS
ED_PCPICH_P
WR_ADJ_SWI
TCH,
ADAPTIVE_R
ACH,
ACK_PRACH_
PREAM_MEA
S,
CAMPING_ST
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RATEGY_SWI
TCHDefault
Value:INTRA_
FREQUENCY_
LDB:0,PUC:
0,UL_UU_LDR
:
0,DL_UU_LDR
:
0,UL_UU_OLC
:
0,DL_UU_OLC
:
0,OLC_EVENT
MEAS:
0,CELL_CODE
_LDR:
0,CELL_CRED
IT_LDR:
0,UL_INTRA_
FREQUENCY_
ULB:
0,UL_UU_CLB
:0,DL_UU_CLB
:
0,CELL_CODE
_CLB:
0,CELL_CRED
IT_CLB:
0,DLLOAD_B
ASED_PCPICH
_PWR_ADJ_S
WITCH:
0,ADAPTIVE_ RACH:
0,ACK_PRAC
H_PREAM_M
EAS:
0,CAMPING_S
TRATEGY_S
WITCH:0
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlLdrFirstActio
n
BSC6900 ADD
UCELLLDR MOD
UCELLLDR
WRFD-150216
WRFD-150217
WRFD-020108
WRFD-020103
WRFD-010506
WRFD-020106
WRFD-070004
WRFD-010616
03
WRFD-021101
WRFD-020701
WRFD-020306
Load Based PS
Redirectionfrom UMTS to
LTE
Load Based PS
Handover from
UMTS to LTE
Code Resource
Management
Inter Frequency
Load Balance
RAB Quality of
Service
Renegotiation
over Iu Interface
Load
Reshuffling
Load Based
GSM and
UMTS
Handover
Enhancement
Based on Iur-gMBMS Load
Control
Dynamic
Channel
Configuration
Control (DCCC)
AMR/WB-
AMR Speech
Rates Control
Inter-RAT
Handover Based
on Load
Meaning:NOA
CT: No loadreshuffling
action is taken.
INTERFREQL
DHO: The inter-
frequency load
handover is
performed.
BERATERED:
Channels are
reconfigured for
the BE service.
QOSRENEGO:
The
renegotiation on
the QoS of the
uncontrollable
real-time service
is performed.
CSINTERRAT-
SHOULDBEL
DHO: The inter-
RAT
SHOULDBEload handover of
the CS domain is
performed.
PSINTERRAT-
SHOULDBEL
DHO: The inter-
RAT
SHOULDBE
load handover of
the PS domain is
performed.
AMRRATERE
D (AMR service
rate decreasing):
The setting of
the TFC subset
and the
negotiation of
the service rate
can be
performed for
the AMR voice
service.
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
MBMSDECPO
WER (MBMS power limiting):
The MBMS
service is
configured with
the minimum
power.
CODEADJ
(code tree
reshuffling):
The fragments
of the downlink
code tree are
arranged.
CSINTERRAT-
SHOULDNOT
LDHO: The
inter-RAT
SHOULDNOT
BE load
handover of the
CS domain is
performed.
PSINTERRAT-SHOULDNOT
LDHO: The
inter-RAT
SHOULDNOT
BE load
handover of the
PS domain is
performed.
WAMRSfReco
nfiguration
(AMR-WB SF
reconfiguration)
: The rate of an
AMR-WB
service is
lowered through
RB
reconfiguration
and the SF of the
AMR-WB
service is
reconfigured
when code
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
resource
congestionoccurs. The
LDR takes the
actions in the
preset sequence
and judges
whether each
action is
successful. If an
action is
unsuccessful,
the LDR turns to
the next action.
If an action is
successful, a
parameter is set
to NOACT, or
all the preceding
actions are
taken, the
downlink LDR
is finished, and
the system waits
for the nexttriggering of the
LDR. Because
each action is
performed by its
algorithm
module, the
LDR algorithm
only selects
users and
delivers control
messages, the
execution result
of each action
can be obtained
after a delay, and
the LDR
algorithm
cannot wait for a
long time, so the
LDR can only
judge whether
the actions
succeed by
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
whether
candidate usersare found. The
inter-frequency
load handover
has no impact on
the QoS of users
and can balance
the cell load, so
the inter-
frequency load
handover
usually serves as
the first action.
The BE service
rate reduction is
effective only
when the DCCC
algorithm is
enabled.
GUI Value
Range:NoAct
(no action),
InterFreqLDHO
(inter-freq loadhandover),
BERateRed(BE
traff rate
reduction),
QoSRenego
(uncontrolled
real-time traff
Qos re-
negotiation),
CSInterRat-
ShouldBeLDHO(CS domain
inter-rat should
be load
handover),
PSInterRat-
ShouldBeLDH
O(PS domain
inter-rat should
be load
handover),
AMRRateRed
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
(AMR traff rate
reduction),MBMSDecPow
er(MBMS
descend power),
CodeAdj(Code
adjust),
CSInterRat-
ShouldNotLDH
O(CS domain
inter-rat should
not be load
handover),
PSInterRat-
ShouldNotLDH
O(PS domain
inter-rat should
not be load
handover),
PSInterU2LLD
HO(U2L PS
Handover),
WAMRSfReco
nfiguration
(AMR-WB SFreconfiguration)
Unit:None
Actual Value
Range:NoAct,
InterFreqLDHO
, BERateRed,
QoSRenego,
CSInterRat-
ShouldBeLDH
O, PSInterRat-
ShouldBeLDHO,
AMRRateRed,
MBMSDecPow
er, CodeAdj,
CSInterRat-
ShouldNotLDH
O, PSInterRat-
ShouldNotLDH
O,
PSInterU2LLD
HO,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WAMRSfReco
nfigurationDefault
Value:CodeAdj
(Code adjust)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlLdrFirstActio
n
BSC6910 ADD
UCELLLDR MOD
UCELLLDR
WRFD-021101
WRFD-020108
WRFD-020103
WRFD-010506
WRFD-020106
WRFD-010616
03
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Code Resource
Management
Inter Frequency
Load Balance
RAB Quality of
Service
Renegotiation
over Iu Interface
Load
Reshuffling
MBMS Load
Control
AMR/WB-
AMR Speech
Rates Control
Meaning:NOA
CT: No loadreshuffling
action is taken.
INTERFREQL
DHO: The inter-
frequency load
handover is
performed.
BERATERED:
Channels are
reconfigured for
the BE service.
QOSRENEGO:
The
renegotiation on
the QoS of the
uncontrollable
real-time service
is performed.
CSINTERRAT-
SHOULDBEL
DHO: The inter-
RAT
SHOULDBEload handover of
the CS domain is
performed.
PSINTERRAT-
SHOULDBEL
DHO: The inter-
RAT
SHOULDBE
load handover of
the PS domain is
performed.
AMRRATERE
D (AMR service
rate decreasing):
The setting of
the TFC subset
and the
negotiation of
the service rate
can be
performed for
the AMR voice
service.
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
MBMSDECPO
WER (MBMS power limiting):
The MBMS
service is
configured with
the minimum
power.
CODEADJ
(code tree
reshuffling):
The fragments
of the downlink
code tree are
arranged.
CSINTERRAT-
SHOULDNOT
LDHO: The
inter-RAT
SHOULDNOT
BE load
handover of the
CS domain is
performed.
PSINTERRAT-SHOULDNOT
LDHO: The
inter-RAT
SHOULDNOT
BE load
handover of the
PS domain is
performed.
WAMRSfReco
nfiguration
(AMR-WB SF
reconfiguration)
: The rate of an
AMR-WB
service is
lowered through
RB
reconfiguration
and the SF of the
AMR-WB
service is
reconfigured
when code
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
resource
congestionoccurs. The
LDR takes the
actions in the
preset sequence
and judges
whether each
action is
successful. If an
action is
unsuccessful,
the LDR turns to
the next action.
If an action is
successful, a
parameter is set
to NOACT, or
all the preceding
actions are
taken, the
downlink LDR
is finished, and
the system waits
for the nexttriggering of the
LDR. Because
each action is
performed by its
algorithm
module, the
LDR algorithm
only selects
users and
delivers control
messages, the
execution result
of each action
can be obtained
after a delay, and
the LDR
algorithm
cannot wait for a
long time, so the
LDR can only
judge whether
the actions
succeed by
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
whether
candidate usersare found. The
inter-frequency
load handover
has no impact on
the QoS of users
and can balance
the cell load, so
the inter-
frequency load
handover
usually serves as
the first action.
The BE service
rate reduction is
effective only
when the DCCC
algorithm is
enabled.
GUI Value
Range:NoAct
(no action),
InterFreqLDHO
(inter-freq loadhandover),
BERateRed(BE
traff rate
reduction),
QoSRenego
(uncontrolled
real-time traff
Qos re-
negotiation),
CSInterRat-
ShouldBeLDHO(CS domain
inter-rat should
be load
handover),
PSInterRat-
ShouldBeLDH
O(PS domain
inter-rat should
be load
handover),
AMRRateRed
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
(AMR traff rate
reduction),MBMSDecPow
er(MBMS
descend power),
CodeAdj(Code
adjust),
CSInterRat-
ShouldNotLDH
O(CS domain
inter-rat should
not be load
handover),
PSInterRat-
ShouldNotLDH
O(PS domain
inter-rat should
not be load
handover),
PSInterU2LLD
HO(U2L PS
Handover),
WAMRSfReco
nfiguration
(AMR-WB SFreconfiguration)
Unit:None
Actual Value
Range:NoAct,
InterFreqLDHO
, BERateRed,
QoSRenego,
CSInterRat-
ShouldBeLDH
O, PSInterRat-
ShouldBeLDHO,
AMRRateRed,
MBMSDecPow
er, CodeAdj,
CSInterRat-
ShouldNotLDH
O, PSInterRat-
ShouldNotLDH
O,
PSInterU2LLD
HO,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WAMRSfReco
nfigurationDefault
Value:CodeAdj
(Code adjust)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CmpSwitch2 BSC6900 SET
UCORRMALGOSWITCH
WRFD-021101
WRFD-020203
WRFD-020202
WRFD-010101
WRFD-020134
WRFD-010501
WRFD-020605
01
WRFD-010202
WRFD-020803
WRFD-150250WRFD-150207
WRFD-150209
WRFD-020402
WRFD-010612
03
WRFD-020400
WRFD-010685
WRFD-020701
WRFD-020110
Dynamic
ChannelConfiguration
Control (DCCC)
Inter RNC Soft
Handover
Intra RNC Soft
Handover
3GPP R9
Specifications
Push to Talk
ConversationalQoS Class
SRNS
Relocation (UE
Not Involved)
UE State in
Connected
Mode (CELL-
DCH, CELL-
PCH, URA-
PCH, CELL-
FACH)
Measurement
Based Direct
Retry
HSUPA Power
Control
DRD
Introduction
Package
Downlink
Enhanced L2AMR/WB-
AMR Speech
Rates Control
Multi Frequency
Band
Networking
Management
Meaning:1.
CMP_RELOCI N_IUUPVER_
NOTCHG_SWI
TCH: When the
switch is set to
ON, the Iu user
plane (UP)
version is not
decreased if the
Uu data rate set
and the Iu data
rate set in the
static relocation
container are
different.
Otherwise, the
Iu UP version is
decreased to
version 1. 2.
CMP_IUBR_D
M_RTT_ALTE
RNATIVE_FM
T_SWITCH:
When the switchis set to ON,
RTT dedicated
measurement
adopts the
extended cell
mode. When the
switch is set to
OFF, RTT
dedicated
measurement
does not adopt
the extended cell
mode. This
parameter is
used to solve the
problem that
some NodeBs
do not support
RTT dedicated
measurement
adopting the
extended cell
mode. 3.
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CMP_IUR_CM
CF_SWITCH:When the switch
is set to ON,
compressed
mode is started
by using a
RADIO LINK
RECONFIGUR
ATION
message. When
the switch is set
to OFF,
compressed
mode is started
by using a
COMPRESSED
MODE
COMMAND
message. 4.
CMP_STTD_R
L_ADD_SWIT
CH: When the
switch is set to
ON, the transmitdiversity mode
information
element is
always carried
in the RADIO
LINK SETUP
REQUEST
message during
radio link
establishment if
a cell enabled
with transmit
diversity and
another cell
disabled with
transmit
diversity exist
under the same
NodeB. This
parameter is
used to solve the
problem that
transmit
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
diversity
parameters areincorrectly
configured for
softer handovers
because the
RADIO LINK
ADDITION
REQUEST
message does
not carry the
transmit
diversity mode.
5.
CMP_STTD_A
SU_SWITCH:
When a UE is
soft-handed
over from a cell
enabled with
transmit
diversity to a cell
disabled with
transmit
diversity, the UEmay return
active set update
failure. If the
switch is set to
ON, the RNC
resends the
active set update
message to the
UE after an
active set update
failure. If the
switch is set to
OFF, the RNC
does not resend
an active set
update message
after an active
set update
failure. 6.
CMP_RAB_DR
D_ROLLBACK
_PUNISH_SWI
TCH: When the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
switch is set to
OFF, a penalty isimposed on a
failed directed
retry due to any
failures on the
Uu interface
during the whole
call. When the
switch is set to
ON, no penalty
is imposed on a
failed directed
retry after best
cell changed. By
default, this
switch is set to
OFF. 7.
CMP_WBAMR
_SUBFLOW_S
WITCH: When
the switch is set
to ON, the
number of WB
AMR servicesubstreams is
configured
according to the
number of
substreams
specified in the
RAB
ASSIGNMENT
REQUEST
message. When
the switch is set
to OFF, the
number of WB
AMR service
substreams is 3.
This switch is
introduced to
comply with the
Change Request
(CR) specified
in the related
protocol, that is,
three substreams
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
need to be
established for aWB AMR
service. The
switch
CMP_WBAMR
_SUBFLOW_S
WITCH in this
version supports
configuration
synchronization
and delivery, but
the RNC does
not use this
switch any
longer. Future
versions do not
support this
switch.
Therefore, it is
recommended
that users avoid
using this
switch. 8.
CMP_IUR_CELLCAP_BITM
AP_TRANSFO
RM_SWITCH:
The switch is
used to solve the
problem that
different
vendors' RNCs
interpret the cell
capability
bitmap
differently on
the Iur interface.
When the switch
is set to ON, the
RNC interprets
the cell
capability
bitmap in a
sequence
opposite to that
specified by the
related protocol.
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
When the switch
is set to OFF, theRNC interprets
the cell
capability
bitmap in the
sequence
specified by the
related protocol.
9.
CMP_MOCN_
PLMN_SEL_S
WITCH: When
the switch is set
to ON, if the UE
supports the
MOCN feature,
the SRNC
preferentially
uses the PLMN
of the UE's
homing operator
in the
RELOCATION
REQUIREDmessage, and the
TRNC
preferentially
uses the PLMN
of the UE's
homing operator
in the
LOCATION
REPORT
message and the
DIRECT
TRANSFER
message during
relocation; if the
UE does not
support the
MOCN feature,
the SRNC and
the TRNC
preferentially
use the common
operator's
PLMN in these
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
above messages.
When the switchis set to OFF, the
SRNC
preferentially
uses the PLMN
of the UE's
homing operator
in the
RELOCATION
REQUIRED
message, and the
TRNC
preferentially
uses the PLMN
of the UE's
homing operator
in the
LOCATION
REPORT
message, but the
TRNC
preferentially
uses the
commonoperator's
PLMN in the
DIRECT
TRANSFER
message during
relocation. 10.
CMP_LOSSLE
SS_RELOC_R
LCPDUSIZEC
HG_SWITCH:
When the switch
is set to ON, the
RNC sets the
"Support for
lossless SRNS
relocation or for
lossless DL
RLC PDU size
change" IE
transmitted on
the Uu interface
to TRUE only if
the UE supports
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
both lossless
SRNSrelocation and
downlink RLC
PDU size
change. When
the switch is set
to OFF, the RNC
sets the "Support
for lossless
SRNS
relocation or for
lossless DL
RLC PDU size
change" IE
transmitted on
the Uu interface
to TRUE if the
UE supports
lossless SRNS
relocation or
downlink RLC
PDU size
change. 11.
CMP_CS_FIXED_RATE_WHE
N_PS_EXIST_
SWITCH:
When the switch
is set to ON, the
RNC sets the
uplink mode of
an AMR service
to maximum
uplink rate, 0,
and SID if the
UE has an
established PS
service. In this
case, the AMRC
algorithm is not
considered. 12.
CMP_SRB_H_
AMR_DRD_H
HO_SWITCH:
Whether DRD
can be
performed
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
during AMR
serviceestablishment if
signaling is
carried over
HSPA. When
this switch is
turned on, DRD
cannot be
performed
during AMR
service
establishment
when signaling
is carried over
HSPA. When
this switch is
turned off, DRD
can be
performed
during AMR
service
establishment
when signaling
is carried over HSPA. 13.
CMP_UU_AM
R_DRD_HHO_
COMPAT_EN
H_SWITCH:
Whether to
enable the
enhanced AMR
anti-static
function. When
this switch is
turned on and
the DRD
procedure is
triggered, the
RNC initiates an
inter-frequency
blind handover
to move a UE to
the target cell
and then
processes an
AMR service in
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
the target cell for
the UE if one of following
conditions is
met: SRBs are
carried over
HSPA channels
and the UE is
processing an
AMR service
only. The US
initiates an
AMR service
when a PS
service is still in
progress. When
this switch is
turned off and
the DRD
procedure is
triggered, the
RNC initiates an
inter-frequency
blind handover
and processes anAMR service in
the target cell for
the UE at the
same time if one
of the preceding
conditions is
also met. 14.
CMP_SINGLE
_PTT_USE_DL
_ENL2_SWITC
H: Whether to
enable the DL
Layer 2
Improvement
feature for
E_PCH-
incapable UEs
processing only
PTT services.
When this
switch is turned
on, the DL Layer
2 Improvement
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
feature is
enabled for E_PCH-
incapable UEs
processing only
PTT services.
When this
switch is turned
off, the DL
Layer 2
Improvement
feature is not
enabled for
E_PCH-
incapable UEs
processing only
PTT services.
15.
CMP_F2D_RL
C_ONESIDE_R
EBUILD_SWIT
CH: Whether
the RLC entity
can be re-
established inonly the uplink
or downlink
during the state
transition from
CELL_FACH to
CELL_DCH
(F2D for short).
When this
switch is turned
off, the RLC
entity must be
re-established in
both uplink and
downlink during
the F2D state
transition. When
this switch is
turned on, the
RLC entity can
be re-
established in
only the uplink
or downlink
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
during the F2D
state transition. Note: If the UE
does not support
RLC re-
establishment in
only the uplink
or downlink, the
F2D state
transition fails
and the UE stays
in the
CELL_FACH
state. As a result,
throughput
decreases. For
details, see
3GPP TS
25.331. 16.
CMP_DRD_SR
BOVERH_SWI
TCH: Whether
signaling radio
bearers (SRBs)
can be switchedover from
FACH or DCHs
to HSPA
channels during
directed retry.
When this
switch is turned
off, SRBs can be
switched over
from FACH or
DCHs to HSPA
channels during
directed retry.
When this
switch is turned
on, SRBs cannot
be switched over
from FACH or
DCHs to HSPA
channels during
directed retry.
Note: This is a
general switch
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
for prohibiting
SRBs from being switched
over from
FACH or DCHs
to HSPA
channels during
directed retry.
To enable the
prohibition to
take effect
during RB
setups, turn on
the
CMP_RBSETU
P_DRD_SRBO
VERH_SWITC
H under the
"CmpSwitch3"
parameter. To
enable the
prohibition to
take effect
during RB
reconfiguration,turn on the
CMP_RBCFG_
DRD_SRBOVE
RH_SWITCH
under the
"CmpSwitch3"
parameter. 17.
CMP_AMRC_F
IXED_INITRA
TE_SWITCH:
Whether the
RNC takes the
cell congestion
status into
consideration
when the initial
AMR mode
during an AMR
service setup is
determined.
When this
switch is turned
off, the RNC
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
takes the cell
congestionstatus into
consideration
during an AMR
service setup. In
the scenario
where Adaptive
Multi Rate
Control
(AMRC) is
enabled, if the
uplink channel
congested, the
uplink data rate
is guaranteed bit
rate (GBR). If
the downlink
channel is
congested, both
the uplink and
downlink data
rates are GBRs.
When this
switch is turnedon, the RNC
does not take the
cell congestion
status into
consideration
during an AMR
service setup
and both the
uplink and
downlink data
rates are the
maximum bit
rates (MBRs).
18.
CMP_DL_LOA
D_BALANCE_
SWITCH:
Whether the
RNC filters out
the neighboring
cells for blind
handovers based
on the downlink
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
load margin
when inter-frequency DRD
for load
balancing takes
effect in the
downlink during
a blind-
handover-based
non-periodic
DRD. When this
switch is turned
off, a
neighboring cell
for blind
handovers
cannot serve as
the target
neighboring cell
for inter-
frequency blind
handovers if the
difference
between the
downlink loadmargins of the
neighboring cell
and the current
cell is less than
the value of the
"LdbDRDOffse
tDCH" or
"LdbDRDOff-
setHSDPA"
parameter.
When this
switch is turned
on, the RNC
does not filter
out any
neighboring cell
for blind
handovers. 19.
CMP_AMR_A_
SUBFLOW_ZE
RO_BLOCK_S
WITCH: Uplink
0 kbit/s transport
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
format of AMR
service subflowA, expressed in
TbNum *
TbSize. When
this switch is
turned off, the
format is 1*0.
When this
switch is turned
on, the format is
0*TbSize. 20.
CMP_IUR_MU
LTI_RL_ADD_
RETRY_SWIT
CH: Whether to
enable the
compatibility
algorithm when
multiple RLs are
added to the
same DRNC.
When this
switch is turned
off, the RNCstops attempting
to re-establish
the RL if an RL
fails to be added
with the failure
cause of
"RadioNetwork:
unspecified
(14)". When this
switch is turned
on, the RNC
attempts to re-
establish the RL
only once if an
RL fails to be
added with the
failure cause of
"RadioNetwork:
unspecified
(14)". 21.
CMP_MBDR_
CALL_TYPE_
OTHER_AS_A
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
MR_SWITCH:
Whether aconversational
service of a UE
complying with
3GPP Release 6
and later are
allowed for
inter-RAT
measurement-
based directed
retry (MBDR) if
CallType of the
conversational
service is Other.
22.
CMP_SRNSR_
WAMR_MOD
E_0_RESTORE
_SWITCH:
Whether the 0
kbit/s transport
format is added
on the Iu
interface whenthe Uu interface
has the 0 kbit/s
transport format
during an
incoming static
relocation of a
wideband AMR
speech service.
When this
switch is turned
off, the 0 kbit/s
transport format
is not added on
the Iu interface.
When this
switch is turned
on, the 0 kbit/s
transport format
is added on the
Iu interface. 23.
CMP_GSM_N
CELL_BAND_
1900M_SWITC
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
H: Whether the
frequency bandof an inter-RAT
neighboring cell
must set to 1900
MHz. When this
switch is turned
on, the
frequency band
in the following
messages is set
to 1900 MHz:
SIB11 and
SIB12 system
information,
inter-RAT
measurement
control, inter-
RAT handover,
inter-RAT
redirection, and
inter-RAT
neighboring cell
information sent
back by theDRNC. When
this switch is
turned off, the
frequency band
of the inter-RAT
neighboring cell
is set as
required. 24.
CMP_ACTIVE
SET_REPORT_
WITH_SYN_S
WITCH:
Whether the
intra-frequency
measurement
reports of UEs
must contain
synchronization
information
about the cells in
the active set.
When this
switch is turned
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
off, the intra-
frequencymeasurement
reports of UEs
must contain
synchronization
information
about the cells in
the active set.
When this
switch is turned
on, the intra-
frequency
measurement
reports of UEs
do not need to
contain
synchronization
information
about the cells in
the active set.
25.
CMP_READSF
N_IND_IN_SIB
_SWITCH:Whether the
RNC carries an
indication to
read the system
frame number
(SFN) of an
intra-frequency
neighboring cell
from SIB11 or
SIB12. When
this switch is
turned off, the
RNC carries the
indication not to
read the SFN of
the intra-
frequency
neighboring cell
from SIB11 or
SIB12. When
this switch is
turned on, the
RNC carries the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
indication to
read the SFN of the intra-
frequency
neighboring cell
from SIB11 or
SIB12. 26.
CMP_UE_NOT
_USE_DL_EN
L2_EXIST_PT
T_SWITCH:
Whether the
UEs not
supporting
E_PCH use the
Downlink
Enhanced L2
feature when
processing the
push to talk
(PTT) services.
When this
switch is turned
off, the UEs not
supportingE_PCH use the
Downlink
Enhanced L2
feature when
processing the
PTT services.
When this
switch is turned
on, the UEs not
supporting
E_PCH do not
use the
Downlink
Enhanced L2
feature when
processing the
PTT services.
27.
CMP_RELOC_
IN_FACH_DE
L_DCH_SWIT
CH: During a
cell update with
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
combined
relocation for aUE not in
CELL_DCH
state: When this
switch is turned
off, the DRNC
processes the
information
about all
dedicated
transport
channels upon
receiving a
RELOCATION
REQ message.
When this
switch is turned
on, the DRNC
only processes
the information
about the first
dedicated
transport
channels uponreceiving the
RELOCATION
REQ message.
In this case, the
UE fails to
transit to the
CELL_DCH
state and new
services cannot
be established.
28.
CMP_CELL_U
PDATE_FACH
_TRFFIC_MC_
OPT: Switch for
measurement
control
optimization.
When this
switch is turned
on, the RNC
does not send a
measurement
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
control message
to a UE if parameters
related to traffic
measurement
control remain
unchanged after
the UE in the
CELL_FACH
state performs a
cell update. If
these parameters
change, the
RNC sends a
measurement
control message
to the UE.When
this switch is
turned off, the
RNC sends a
measurement
control message
to a UE after the
UE in the
CELL_FACHstate performs a
cell update. 29.
CMP_MR_AG
PS_MC_MSG_
SEND_OPT_S
WITCH:
Whether a UE
can request
additional
AGPS data. 1:
This switch is set
to on. The value
of the
additionalAs-
sistDataReq IE
is TRUE in MR
AGPS
measurement
control
messages,
indicating that a
UE can request
additional
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
AGPS data. 0:
This switch is setto off. The value
of the
additionalAs-
sistDataReq IE
is FALSE in MR
AGPS
measurement
control
messages,
indicating that a
UE cannot
request
additional
AGPS data.
GUI Value
Range:CMP_R
ELOCIN_IUUP
VER_NOTCH
G_SWITCH,
CMP_IUBR_D
M_RTT_ALTE
RNATIVE_FM
T_SWITCH,CMP_IUR_CM
CF_SWITCH,
CMP_STTD_R
L_ADD_SWIT
CH,
CMP_STTD_A
SU_SWITCH,
CMP_RAB_DR
D_ROLLBACK
_PUNISH_SWI
TCH,CMP_WBAMR
_SUBFLOW_S
WITCH,
CMP_IUR_CE
LLCAP_BITM
AP_TRANSFO
RM_SWITCH,
CMP_MOCN_
PLMN_SEL_S
WITCH,
CMP_LOSSLE
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SS_RELOC_R
LCPDUSIZECHG_SWITCH,
CMP_CS_FIXE
D_RATE_WHE
N_PS_EXIST_
SWITCH,
CMP_SRB_H_
AMR_DRD_H
HO_SWITCH,
CMP_UU_AM
R_DRD_HHO_
COMPAT_EN
H_SWITCH,
CMP_SINGLE
_PTT_USE_DL
_ENL2_SWITC
H,
CMP_F2D_RL
C_ONESIDE_R
EBUILD_SWIT
CH,
CMP_DRD_SR
BOVERH_SWI
TCH,CMP_AMRC_F
IXED_INITRA
TE_SWITCH,
CMP_DL_LOA
D_BALANCE_
SWITCH,
CMP_AMR_A_
SUBFLOW_ZE
RO_BLOCK_S
WITCH,
CMP_IUR_MU
LTI_RL_ADD_
RETRY_SWIT
CH,
CMP_MBDR_
CALL_TYPE_
OTHER_AS_A
MR_SWITCH,
CMP_SRNSR_
WAMR_MOD
E_0_RESTORE
_SWITCH,
CMP_GSM_N
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CELL_BAND_
1900M_SWITCH,
CMP_ACTIVE
SET_REPORT_
WITH_SYN_S
WITCH,
CMP_READSF
N_IND_IN_SIB
_SWITCH,
CMP_UE_NOT
_USE_DL_EN
L2_EXIST_PT
T_SWITCH,
CMP_RELOC_
IN_FACH_DE
L_DCH_SWIT
CH,
CMP_CELL_U
PDATE_FACH
_TRFFIC_MC_
OPT,
CMP_MR_AG
PS_MC_MSG_
SEND_OPT_SWITCH
Unit:None
Actual Value
Range:CMP_R
ELOCIN_IUUP
VER_NOTCH
G_SWITCH,
CMP_IUBR_D
M_RTT_ALTE
RNATIVE_FM
T_SWITCH,CMP_IUR_CM
CF_SWITCH,
CMP_STTD_R
L_ADD_SWIT
CH,
CMP_STTD_A
SU_SWITCH,
CMP_RAB_DR
D_ROLLBACK
_PUNISH_SWI
TCH,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CMP_WBAMR
_SUBFLOW_SWITCH,
CMP_IUR_CE
LLCAP_BITM
AP_TRANSFO
RM_SWITCH,
CMP_MOCN_
PLMN_SEL_S
WITCH,
CMP_LOSSLE
SS_RELOC_R
LCPDUSIZEC
HG_SWITCH,
CMP_CS_FIXE
D_RATE_WHE
N_PS_EXIST_
SWITCH,
CMP_SRB_H_
AMR_DRD_H
HO_SWITCH,
CMP_UU_AM
R_DRD_HHO_
COMPAT_EN
H_SWITCH,CMP_SINGLE
_PTT_USE_DL
_ENL2_SWITC
H,
CMP_F2D_RL
C_ONESIDE_R
EBUILD_SWIT
CH,
CMP_DRD_SR
BOVERH_SWI
TCH,
CMP_AMRC_F
IXED_INITRA
TE_SWITCH,
CMP_DL_LOA
D_BALANCE_
SWITCH,
CMP_AMR_A_
SUBFLOW_ZE
RO_BLOCK_S
WITCH,
CMP_IUR_MU
LTI_RL_ADD_
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RETRY_SWIT
CH,CMP_MBDR_
CALL_TYPE_
OTHER_AS_A
MR_SWITCH,
CMP_SRNSR_
WAMR_MOD
E_0_RESTORE
_SWITCH,
CMP_GSM_N
CELL_BAND_
1900M_SWITC
H,
CMP_ACTIVE
SET_REPORT_
WITH_SYN_S
WITCH,
CMP_READSF
N_IND_IN_SIB
_SWITCH,
CMP_UE_NOT
_USE_DL_EN
L2_EXIST_PT
T_SWITCH,CMP_RELOC_
IN_FACH_DE
L_DCH_SWIT
CH,
CMP_CELL_U
PDATE_FACH
_TRFFIC_MC_
OPT,
CMP_MR_AG
PS_MC_MSG_
SEND_OPT_S
WITCH
Default
Value:CMP_RE
LOCIN_IUUPV
ER_NOTCHG_
SWITCH:
0,CMP_IUBR_
DM_RTT_ALT
ERNATIVE_F
MT_SWITCH:
0,CMP_IUR_C
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
MCF_SWITCH
:0,CMP_STTD_
RL_ADD_SWI
TCH:
0,CMP_STTD_
ASU_SWITCH:
0,CMP_RAB_
DRD_ROLLBA
CK_PUNISH_S
WITCH:
0,CMP_WBAM
R_SUBFLOW_
SWITCH:
0,CMP_IUR_C
ELLCAP_BIT
MAP_TRANSF
ORM_SWITCH
:
0,CMP_MOCN
_PLMN_SEL_S
WITCH:
0,CMP_LOSSL
ESS_RELOC_
RLCPDUSIZECHG_SWITCH
:
0,CMP_CS_FI
XED_RATE_W
HEN_PS_EXIS
T_SWITCH:
0,CMP_SRB_H
_AMR_DRD_H
HO_SWITCH:
0,CMP_UU_A
MR_DRD_HH
O_COMPAT_E
NH_SWITCH:
0,CMP_SINGL
E_PTT_USE_D
L_ENL2_SWIT
CH:
0,CMP_F2D_R
LC_ONESIDE_
REBUILD_SW
ITCH:
0,CMP_DRD_S
RBOVERH_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH:
0,CMP_AMRC _FIXED_INITR
ATE_SWITCH:
0,CMP_DL_LO
AD_BALANC
E_SWITCH:
0,CMP_AMR_
A_SUBFLOW_
ZERO_BLOCK
_SWITCH:
0,CMP_IUR_M
ULTI_RL_AD
D_RETRY_SW
ITCH:
0,CMP_MBDR
_CALL_TYPE_
OTHER_AS_A
MR_SWITCH:
0,CMP_SRNSR
_WAMR_MOD
E_0_RESTORE
_SWITCH:
0,CMP_GSM_
NCELL_BAND _1900M_SWIT
CH:
0,CMP_ACTIV
ESET_REPOR
T_WITH_SYN
_SWITCH:
1,CMP_READ
SFN_IND_IN_
SIB_SWITCH:
1,CMP_UE_N
OT_USE_DL_
ENL2_EXIST_
PTT_SWITCH:
0,CMP_RELO
C_IN_FACH_D
EL_DCH_SWI
TCH:
0,CMP_CELL_
UPDATE_FAC
H_TRFFIC_M
C_OPT:
0,CMP_MR_A
GPS_MC_MSG
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
_SEND_OPT_S
WITCH:1
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CmpSwitch2 BSC6910 SET
UCORRMALGOSWITCH
WRFD-021101
WRFD-020203
WRFD-020202
WRFD-010101
WRFD-020134
WRFD-010501
WRFD-020605
01
WRFD-010202
WRFD-020803
WRFD-150250WRFD-150207
WRFD-150209
WRFD-020402
WRFD-010612
03
WRFD-020400
WRFD-010685
WRFD-020701
WRFD-020110
Dynamic
ChannelConfiguration
Control (DCCC)
Inter RNC Soft
Handover
Intra RNC Soft
Handover
3GPP R9
Specifications
Push to Talk
ConversationalQoS Class
SRNS
Relocation (UE
Not Involved)
UE State in
Connected
Mode (CELL-
DCH, CELL-
PCH, URA-
PCH, CELL-
FACH)
Measurement
Based Direct
Retry
HSUPA Power
Control
DRD
Introduction
Package
Downlink
Enhanced L2AMR/WB-
AMR Speech
Rates Control
Multi Frequency
Band
Networking
Management
Meaning:1.
CMP_RELOCI N_IUUPVER_
NOTCHG_SWI
TCH: When the
switch is set to
ON, the Iu user
plane (UP)
version is not
decreased if the
Uu data rate set
and the Iu data
rate set in the
static relocation
container are
different.
Otherwise, the
Iu UP version is
decreased to
version 1. 2.
CMP_IUBR_D
M_RTT_ALTE
RNATIVE_FM
T_SWITCH:
When the switchis set to ON,
RTT dedicated
measurement
adopts the
extended cell
mode. When the
switch is set to
OFF, RTT
dedicated
measurement
does not adopt
the extended cell
mode. This
parameter is
used to solve the
problem that
some NodeBs
do not support
RTT dedicated
measurement
adopting the
extended cell
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
mode. 3.
CMP_IUR_CMCF_SWITCH:
When the switch
is set to ON,
compressed
mode is started
by using a
RADIO LINK
RECONFIGUR
ATION
message. When
the switch is set
to OFF,
compressed
mode is started
by using a
COMPRESSED
MODE
COMMAND
message. 4.
CMP_STTD_R
L_ADD_SWIT
CH: When the
switch is set toON, the transmit
diversity mode
information
element is
always carried
in the RADIO
LINK SETUP
REQUEST
message during
radio link
establishment if
a cell enabled
with transmit
diversity and
another cell
disabled with
transmit
diversity exist
under the same
NodeB. This
parameter is
used to solve the
problem that
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
transmit
diversity parameters are
incorrectly
configured for
softer handovers
because the
RADIO LINK
ADDITION
REQUEST
message does
not carry the
transmit
diversity mode.
5.
CMP_STTD_A
SU_SWITCH:
When a UE is
soft-handed
over from a cell
enabled with
transmit
diversity to a cell
disabled with
transmitdiversity, the UE
may return
active set update
failure. If the
switch is set to
ON, the RNC
resends the
active set update
message to the
UE after an
active set update
failure. If the
switch is set to
OFF, the RNC
does not resend
an active set
update message
after an active
set update
failure. 6.
CMP_RAB_DR
D_ROLLBACK
_PUNISH_SWI
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
three substreams
need to beestablished for a
WB AMR
service. The
switch
CMP_WBAMR
_SUBFLOW_S
WITCH in this
version supports
configuration
synchronization
and delivery, but
the RNC does
not use this
switch any
longer. Future
versions do not
support this
switch.
Therefore, it is
recommended
that users avoid
using this
switch. 8.CMP_IUR_CE
LLCAP_BITM
AP_TRANSFO
RM_SWITCH:
The switch is
used to solve the
problem that
different
vendors' RNCs
interpret the cell
capability
bitmap
differently on
the Iur interface.
When the switch
is set to ON, the
RNC interprets
the cell
capability
bitmap in a
sequence
opposite to that
specified by the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
related protocol.
When the switchis set to OFF, the
RNC interprets
the cell
capability
bitmap in the
sequence
specified by the
related protocol.
9.
CMP_MOCN_
PLMN_SEL_S
WITCH: When
the switch is set
to ON, if the UE
supports the
MOCN feature,
the SRNC
preferentially
uses the PLMN
of the UE's
homing operator
in the
RELOCATIONREQUIRED
message, and the
TRNC
preferentially
uses the PLMN
of the UE's
homing operator
in the
LOCATION
REPORT
message and the
DIRECT
TRANSFER
message during
relocation; if the
UE does not
support the
MOCN feature,
the SRNC and
the TRNC
preferentially
use the common
operator's
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
PLMN in these
above messages.When the switch
is set to OFF, the
SRNC
preferentially
uses the PLMN
of the UE's
homing operator
in the
RELOCATION
REQUIRED
message, and the
TRNC
preferentially
uses the PLMN
of the UE's
homing operator
in the
LOCATION
REPORT
message, but the
TRNC
preferentially
uses thecommon
operator's
PLMN in the
DIRECT
TRANSFER
message during
relocation. 10.
CMP_LOSSLE
SS_RELOC_R
LCPDUSIZEC
HG_SWITCH:
When the switch
is set to ON, the
RNC sets the
"Support for
lossless SRNS
relocation or for
lossless DL
RLC PDU size
change" IE
transmitted on
the Uu interface
to TRUE only if
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
the UE supports
both losslessSRNS
relocation and
downlink RLC
PDU size
change. When
the switch is set
to OFF, the RNC
sets the "Support
for lossless
SRNS
relocation or for
lossless DL
RLC PDU size
change" IE
transmitted on
the Uu interface
to TRUE if the
UE supports
lossless SRNS
relocation or
downlink RLC
PDU size
change. 11.CMP_CS_FIXE
D_RATE_WHE
N_PS_EXIST_
SWITCH:
When the switch
is set to ON, the
RNC sets the
uplink mode of
an AMR service
to maximum
uplink rate, 0,
and SID if the
UE has an
established PS
service. In this
case, the AMRC
algorithm is not
considered. 12.
CMP_SRB_H_
AMR_DRD_H
HO_SWITCH:
Whether DRD
can be
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
performed
during AMR service
establishment if
signaling is
carried over
HSPA. When
this switch is
turned on, DRD
cannot be
performed
during AMR
service
establishment
when signaling
is carried over
HSPA. When
this switch is
turned off, DRD
can be
performed
during AMR
service
establishment
when signalingis carried over
HSPA. 13.
CMP_UU_AM
R_DRD_HHO_
COMPAT_EN
H_SWITCH:
Whether to
enable the
enhanced AMR
anti-static
function. When
this switch is
turned on and
the DRD
procedure is
triggered, the
RNC initiates an
inter-frequency
blind handover
to move a UE to
the target cell
and then
processes an
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
AMR service in
the target cell for the UE if one of
following
conditions is
met: SRBs are
carried over
HSPA channels
and the UE is
processing an
AMR service
only. The US
initiates an
AMR service
when a PS
service is still in
progress. When
this switch is
turned off and
the DRD
procedure is
triggered, the
RNC initiates an
inter-frequency
blind handover and processes an
AMR service in
the target cell for
the UE at the
same time if one
of the preceding
conditions is
also met. 14.
CMP_SINGLE
_PTT_USE_DL
_ENL2_SWITC
H: Whether to
enable the DL
Layer 2
Improvement
feature for
E_PCH-
incapable UEs
processing only
PTT services.
When this
switch is turned
on, the DL Layer
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
2 Improvement
feature isenabled for
E_PCH-
incapable UEs
processing only
PTT services.
When this
switch is turned
off, the DL
Layer 2
Improvement
feature is not
enabled for
E_PCH-
incapable UEs
processing only
PTT services.
15.
CMP_F2D_RL
C_ONESIDE_R
EBUILD_SWIT
CH: Whether
the RLC entity
can be re-established in
only the uplink
or downlink
during the state
transition from
CELL_FACH to
CELL_DCH
(F2D for short).
When this
switch is turned
off, the RLC
entity must be
re-established in
both uplink and
downlink during
the F2D state
transition. When
this switch is
turned on, the
RLC entity can
be re-
established in
only the uplink
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
off, the RNC
takes the cellcongestion
status into
consideration
during an AMR
service setup. In
the scenario
where Adaptive
Multi Rate
Control
(AMRC) is
enabled, if the
uplink channel
congested, the
uplink data rate
is guaranteed bit
rate (GBR). If
the downlink
channel is
congested, both
the uplink and
downlink data
rates are GBRs.
When thisswitch is turned
on, the RNC
does not take the
cell congestion
status into
consideration
during an AMR
service setup
and both the
uplink and
downlink data
rates are the
maximum bit
rates (MBRs).
18.
CMP_DL_LOA
D_BALANCE_
SWITCH:
Whether the
RNC filters out
the neighboring
cells for blind
handovers based
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
0 kbit/s transport
format of AMR service subflow
A, expressed in
TbNum *
TbSize. When
this switch is
turned off, the
format is 1*0.
When this
switch is turned
on, the format is
0*TbSize. 20.
CMP_IUR_MU
LTI_RL_ADD_
RETRY_SWIT
CH: Whether to
enable the
compatibility
algorithm when
multiple RLs are
added to the
same DRNC.
When this
switch is turnedoff, the RNC
stops attempting
to re-establish
the RL if an RL
fails to be added
with the failure
cause of
"RadioNetwork:
unspecified
(14)". When this
switch is turned
on, the RNC
attempts to re-
establish the RL
only once if an
RL fails to be
added with the
failure cause of
"RadioNetwork:
unspecified
(14)". 21.
CMP_MBDR_
CALL_TYPE_
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
OTHER_AS_A
MR_SWITCH:Whether a
conversational
service of a UE
complying with
3GPP Release 6
and later are
allowed for
inter-RAT
measurement-
based directed
retry (MBDR) if
CallType of the
conversational
service is Other.
22.
CMP_SRNSR_
WAMR_MOD
E_0_RESTORE
_SWITCH:
Whether the 0
kbit/s transport
format is added
on the Iuinterface when
the Uu interface
has the 0 kbit/s
transport format
during an
incoming static
relocation of a
wideband AMR
speech service.
When this
switch is turned
off, the 0 kbit/s
transport format
is not added on
the Iu interface.
When this
switch is turned
on, the 0 kbit/s
transport format
is added on the
Iu interface. 23.
CMP_GSM_N
CELL_BAND_
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
switch is turned
off, the intra-frequency
measurement
reports of UEs
must contain
synchronization
information
about the cells in
the active set.
When this
switch is turned
on, the intra-
frequency
measurement
reports of UEs
do not need to
contain
synchronization
information
about the cells in
the active set.
25.
CMP_READSF
N_IND_IN_SIB _SWITCH:
Whether the
RNC carries an
indication to
read the system
frame number
(SFN) of an
intra-frequency
neighboring cell
from SIB11 or
SIB12. When
this switch is
turned off, the
RNC carries the
indication not to
read the SFN of
the intra-
frequency
neighboring cell
from SIB11 or
SIB12. When
this switch is
turned on, the
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
cell update with
combinedrelocation for a
UE not in
CELL_DCH
state: When this
switch is turned
off, the DRNC
processes the
information
about all
dedicated
transport
channels upon
receiving a
RELOCATION
REQ message.
When this
switch is turned
on, the DRNC
only processes
the information
about the first
dedicated
transportchannels upon
receiving the
RELOCATION
REQ message.
In this case, the
UE fails to
transit to the
CELL_DCH
state and new
services cannot
be established.
28.
CMP_CELL_U
PDATE_FACH
_TRFFIC_MC_
OPT: Switch for
measurement
control
optimization.
When this
switch is turned
on, the RNC
does not send a
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
measurement
control messageto a UE if
parameters
related to traffic
measurement
control remain
unchanged after
the UE in the
CELL_FACH
state performs a
cell update. If
these parameters
change, the
RNC sends a
measurement
control message
to the UE.When
this switch is
turned off, the
RNC sends a
measurement
control message
to a UE after the
UE in theCELL_FACH
state performs a
cell update. 29.
CMP_MR_AG
PS_MC_MSG_
SEND_OPT_S
WITCH:
Whether a UE
can request
additional
AGPS data. 1:
This switch is set
to on. The value
of the
additionalAs-
sistDataReq IE
is TRUE in MR
AGPS
measurement
control
messages,
indicating that a
UE can request
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
0,CMP_IUR_C
MCF_SWITCH:
0,CMP_STTD_
RL_ADD_SWI
TCH:
0,CMP_STTD_
ASU_SWITCH:
0,CMP_RAB_
DRD_ROLLBA
CK_PUNISH_S
WITCH:
0,CMP_WBAM
R_SUBFLOW_
SWITCH:
0,CMP_IUR_C
ELLCAP_BIT
MAP_TRANSF
ORM_SWITCH
:
0,CMP_MOCN
_PLMN_SEL_S
WITCH:
0,CMP_LOSSL
ESS_RELOC_ RLCPDUSIZE
CHG_SWITCH
:
0,CMP_CS_FI
XED_RATE_W
HEN_PS_EXIS
T_SWITCH:
0,CMP_SRB_H
_AMR_DRD_H
HO_SWITCH:
0,CMP_UU_A
MR_DRD_HH
O_COMPAT_E
NH_SWITCH:
0,CMP_SINGL
E_PTT_USE_D
L_ENL2_SWIT
CH:
0,CMP_F2D_R
LC_ONESIDE_
REBUILD_SW
ITCH:
0,CMP_DRD_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RBOVERH_S
WITCH:0,CMP_AMRC
_FIXED_INITR
ATE_SWITCH:
0,CMP_DL_LO
AD_BALANC
E_SWITCH:
0,CMP_AMR_
A_SUBFLOW_
ZERO_BLOCK
_SWITCH:
0,CMP_IUR_M
ULTI_RL_AD
D_RETRY_SW
ITCH:
0,CMP_MBDR
_CALL_TYPE_
OTHER_AS_A
MR_SWITCH:
0,CMP_SRNSR
_WAMR_MOD
E_0_RESTORE
_SWITCH:
0,CMP_GSM_ NCELL_BAND
_1900M_SWIT
CH:
0,CMP_ACTIV
ESET_REPOR
T_WITH_SYN
_SWITCH:
1,CMP_READ
SFN_IND_IN_
SIB_SWITCH:
1,CMP_UE_N
OT_USE_DL_
ENL2_EXIST_
PTT_SWITCH:
0,CMP_RELO
C_IN_FACH_D
EL_DCH_SWI
TCH:
0,CMP_CELL_
UPDATE_FAC
H_TRFFIC_M
C_OPT:
0,CMP_MR_A
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
GPS_MC_MSG
_SEND_OPT_SWITCH:1
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RsvSwitch4 BSC6900 SET
UALGORSVPARA
None None Meaning:RRM
algorithmreserved U32
Switch Para 4.
The 32-bit
parameter is
reserved for
further change
request use.
Disuse
statement: This
parameter is
used
temporarily in
patch versions
and will be
replaced with a
new parameter
in later versions.
The new
parameter ID
reflects the
parameter
function.
Therefore, this parameter is not
recommended
for the
configuration
interface.
GUI Value
Range:RESER
VED_SWITCH
_4_BIT1,
RESERVED_S
WITCH_4_BIT2,
RESERVED_S
WITCH_4_BIT
3,
RESERVED_S
WITCH_4_BIT
4,
RESERVED_S
WITCH_4_BIT
5,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_4_BIT
6,RESERVED_S
WITCH_4_BIT
7,
RESERVED_S
WITCH_4_BIT
8,
RESERVED_S
WITCH_4_BIT
9,
RESERVED_S
WITCH_4_BIT
10,
RESERVED_S
WITCH_4_BIT
11,
RESERVED_S
WITCH_4_BIT
12,
RESERVED_S
WITCH_4_BIT
13,
RESERVED_S
WITCH_4_BIT14,
RESERVED_S
WITCH_4_BIT
15,
RESERVED_S
WITCH_4_BIT
16,
RESERVED_S
WITCH_4_BIT
17,
RESERVED_S
WITCH_4_BIT
18,
RESERVED_S
WITCH_4_BIT
19,
RESERVED_S
WITCH_4_BIT
20,
RESERVED_S
WITCH_4_BIT
21,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_4_BIT
5,RESERVED_S
WITCH_4_BIT
6,
RESERVED_S
WITCH_4_BIT
7,
RESERVED_S
WITCH_4_BIT
8,
RESERVED_S
WITCH_4_BIT
9,
RESERVED_S
WITCH_4_BIT
10,
RESERVED_S
WITCH_4_BIT
11,
RESERVED_S
WITCH_4_BIT
12,
RESERVED_S
WITCH_4_BIT13,
RESERVED_S
WITCH_4_BIT
14,
RESERVED_S
WITCH_4_BIT
15,
RESERVED_S
WITCH_4_BIT
16,
RESERVED_S
WITCH_4_BIT
17,
RESERVED_S
WITCH_4_BIT
18,
RESERVED_S
WITCH_4_BIT
19,
RESERVED_S
WITCH_4_BIT
20,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_4_BIT
21,RESERVED_S
WITCH_4_BIT
22,
RESERVED_S
WITCH_4_BIT
23,
RESERVED_S
WITCH_4_BIT
24,
RESERVED_S
WITCH_4_BIT
25,
RESERVED_S
WITCH_4_BIT
26,
RESERVED_S
WITCH_4_BIT
27,
RESERVED_S
WITCH_4_BIT
28,
RESERVED_S
WITCH_4_BIT29,
RESERVED_S
WITCH_4_BIT
30,
RESERVED_S
WITCH_4_BIT
31,
RESERVED_S
WITCH_4_BIT
32
DefaultValue:RESERV
ED_SWITCH_
4_BIT1:0,RESE
RVED_SWITC
H_4_BIT2:0,R
ESERVED_SW
ITCH_4_BIT3:
0,RESERVED_
SWITCH_4_BI
T4:0,RESERVE
D_SWITCH_4_
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
BIT5:0,RESER
VED_SWITCH _4_BIT6:0,RES
ERVED_SWIT
CH_4_BIT7:0,
RESERVED_S
WITCH_4_BIT
8:0,RESERVE
D_SWITCH_4_
BIT9:0,RESER
VED_SWITCH
_4_BIT10:0,RE
SERVED_SWI
TCH_4_BIT11:
0,RESERVED_
SWITCH_4_BI
T12:0,RESERV
ED_SWITCH_
4_BIT13:0,RES
ERVED_SWIT
CH_4_BIT14:0,
RESERVED_S
WITCH_4_BIT
15:0,RESERVE
D_SWITCH_4_ BIT16:0,RESE
RVED_SWITC
H_4_BIT17:0,R
ESERVED_SW
ITCH_4_BIT18
:
0,RESERVED_
SWITCH_4_BI
T19:0,RESERV
ED_SWITCH_
4_BIT20:0,RES
ERVED_SWIT
CH_4_BIT21:0,
RESERVED_S
WITCH_4_BIT
22:0,RESERVE
D_SWITCH_4_
BIT23:0,RESE
RVED_SWITC
H_4_BIT24:0,R
ESERVED_SW
ITCH_4_BIT25
:
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
0,RESERVED_
SWITCH_4_BIT26:0,RESERV
ED_SWITCH_
4_BIT27:0,RES
ERVED_SWIT
CH_4_BIT28:0,
RESERVED_S
WITCH_4_BIT
29:0,RESERVE
D_SWITCH_4_
BIT30:0,RESE
RVED_SWITC
H_4_BIT31:0,R
ESERVED_SW
ITCH_4_BIT32
:0
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RsvSwitch4 BSC6910 SET
UALGORSVPARA
None None Meaning:RRM
algorithmreserved U32
Switch Para 4.
The 32-bit
parameter is
reserved for
further change
request use.
Disuse
statement: This
parameter is
used
temporarily in
patch versions
and will be
replaced with a
new parameter
in later versions.
The new
parameter ID
reflects the
parameter
function.
Therefore, this parameter is not
recommended
for the
configuration
interface.
GUI Value
Range:RESER
VED_SWITCH
_4_BIT1,
RESERVED_S
WITCH_4_BIT2,
RESERVED_S
WITCH_4_BIT
3,
RESERVED_S
WITCH_4_BIT
4,
RESERVED_S
WITCH_4_BIT
5,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_4_BIT
6,RESERVED_S
WITCH_4_BIT
7,
RESERVED_S
WITCH_4_BIT
8,
RESERVED_S
WITCH_4_BIT
9,
RESERVED_S
WITCH_4_BIT
10,
RESERVED_S
WITCH_4_BIT
11,
RESERVED_S
WITCH_4_BIT
12,
RESERVED_S
WITCH_4_BIT
13,
RESERVED_S
WITCH_4_BIT14,
RESERVED_S
WITCH_4_BIT
15,
RESERVED_S
WITCH_4_BIT
16,
RESERVED_S
WITCH_4_BIT
17,
RESERVED_S
WITCH_4_BIT
18,
RESERVED_S
WITCH_4_BIT
19,
RESERVED_S
WITCH_4_BIT
20,
RESERVED_S
WITCH_4_BIT
21,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_4_BIT
22,RESERVED_S
WITCH_4_BIT
23,
RESERVED_S
WITCH_4_BIT
24,
RESERVED_S
WITCH_4_BIT
25,
RESERVED_S
WITCH_4_BIT
26,
RESERVED_S
WITCH_4_BIT
27,
RESERVED_S
WITCH_4_BIT
28,
RESERVED_S
WITCH_4_BIT
29,
RESERVED_S
WITCH_4_BIT30,
RESERVED_S
WITCH_4_BIT
31,
RESERVED_S
WITCH_4_BIT
32
Unit:None
Actual Value
Range:RESER
VED_SWITCH _4_BIT1,
RESERVED_S
WITCH_4_BIT
2,
RESERVED_S
WITCH_4_BIT
3,
RESERVED_S
WITCH_4_BIT
4,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_4_BIT
5,RESERVED_S
WITCH_4_BIT
6,
RESERVED_S
WITCH_4_BIT
7,
RESERVED_S
WITCH_4_BIT
8,
RESERVED_S
WITCH_4_BIT
9,
RESERVED_S
WITCH_4_BIT
10,
RESERVED_S
WITCH_4_BIT
11,
RESERVED_S
WITCH_4_BIT
12,
RESERVED_S
WITCH_4_BIT13,
RESERVED_S
WITCH_4_BIT
14,
RESERVED_S
WITCH_4_BIT
15,
RESERVED_S
WITCH_4_BIT
16,
RESERVED_S
WITCH_4_BIT
17,
RESERVED_S
WITCH_4_BIT
18,
RESERVED_S
WITCH_4_BIT
19,
RESERVED_S
WITCH_4_BIT
20,
RESERVED_S
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WITCH_4_BIT
21,RESERVED_S
WITCH_4_BIT
22,
RESERVED_S
WITCH_4_BIT
23,
RESERVED_S
WITCH_4_BIT
24,
RESERVED_S
WITCH_4_BIT
25,
RESERVED_S
WITCH_4_BIT
26,
RESERVED_S
WITCH_4_BIT
27,
RESERVED_S
WITCH_4_BIT
28,
RESERVED_S
WITCH_4_BIT29,
RESERVED_S
WITCH_4_BIT
30,
RESERVED_S
WITCH_4_BIT
31,
RESERVED_S
WITCH_4_BIT
32
DefaultValue:RESERV
ED_SWITCH_
4_BIT1:0,RESE
RVED_SWITC
H_4_BIT2:0,R
ESERVED_SW
ITCH_4_BIT3:
0,RESERVED_
SWITCH_4_BI
T4:0,RESERVE
D_SWITCH_4_
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
BIT5:0,RESER
VED_SWITCH _4_BIT6:0,RES
ERVED_SWIT
CH_4_BIT7:0,
RESERVED_S
WITCH_4_BIT
8:0,RESERVE
D_SWITCH_4_
BIT9:0,RESER
VED_SWITCH
_4_BIT10:0,RE
SERVED_SWI
TCH_4_BIT11:
0,RESERVED_
SWITCH_4_BI
T12:0,RESERV
ED_SWITCH_
4_BIT13:0,RES
ERVED_SWIT
CH_4_BIT14:0,
RESERVED_S
WITCH_4_BIT
15:0,RESERVE
D_SWITCH_4_ BIT16:0,RESE
RVED_SWITC
H_4_BIT17:0,R
ESERVED_SW
ITCH_4_BIT18
:
0,RESERVED_
SWITCH_4_BI
T19:0,RESERV
ED_SWITCH_
4_BIT20:0,RES
ERVED_SWIT
CH_4_BIT21:0,
RESERVED_S
WITCH_4_BIT
22:0,RESERVE
D_SWITCH_4_
BIT23:0,RESE
RVED_SWITC
H_4_BIT24:0,R
ESERVED_SW
ITCH_4_BIT25
:
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
0,RESERVED_
SWITCH_4_BIT26:0,RESERV
ED_SWITCH_
4_BIT27:0,RES
ERVED_SWIT
CH_4_BIT28:0,
RESERVED_S
WITCH_4_BIT
29:0,RESERVE
D_SWITCH_4_
BIT30:0,RESE
RVED_SWITC
H_4_BIT31:0,R
ESERVED_SW
ITCH_4_BIT32
:0
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
TAC_FUNC BSC6900 ADD
UIMEITACMOD
UIMEITAC
RMV
UIMEITAC
WRFD-020500 Enhanced Fast
Dormancy
Meaning:The
function of theTAC.If
Fast_Dormancy
is selected, the
TAC specifies
the UEs that are
enabled with the
Fast Dormancy
feature; if
HSDPA_RB_Se
tup_Cmp_CRC
is selected, the
TAC specifies
that the UEs
want to establish
services on
HSDPA,
however, the
RNC sets up
services on the
DCH, and retries
on HSDPA
later; if
Special_User_Enhance is
selected, the
TAC specifies
the UEs that are
enabled with the
Special User
Enhance feature.
GUI Value
Range:Fast_Dor
mancy,
HSDPA_RB_Setup_Cmp_CRC,
Special_User_E
nhance
Unit:None
Actual Value
Range:Fast_Dor
mancy,
HSDPA_RB_Se
tup_Cmp_CRC,
Special_User_E
nhance
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
TAC_FUNC BSC6910 ADD
UIMEITACMOD
UIMEITAC
RMV
UIMEITAC
WRFD-020500 Enhanced Fast
Dormancy
Meaning:The
function of theTAC.If
Fast_Dormancy
is selected, the
TAC specifies
the UEs that are
enabled with the
Fast Dormancy
feature; if
HSDPA_RB_Se
tup_Cmp_CRC
is selected, the
TAC specifies
that the UEs
want to establish
services on
HSDPA,
however, the
RNC sets up
services on the
DCH, and retries
on HSDPA
later; if
Special_User_Enhance is
selected, the
TAC specifies
the UEs that are
enabled with the
Special User
Enhance feature.
GUI Value
Range:Fast_Dor
mancy,
HSDPA_RB_Setup_Cmp_CRC,
Special_User_E
nhance
Unit:None
Actual Value
Range:Fast_Dor
mancy,
HSDPA_RB_Se
tup_Cmp_CRC,
Special_User_E
nhance
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
Default
Value:None
AMRQosPerfor
m
BSC6900 SET
UQOSACT
WRFD-020701 AMR/WB-
AMR Speech
Rates Control
Meaning:When
the parameter is
set to YES, the
QoS control
algorithm is
used for AMR
services. When
the parameter is
set to NO, the
QoS control
algorithm is notused for AMR
services.The
QoS actions of
AMR services
include rate
downsizing,
inter frequency
handover and
inter rat
handover.
GUI ValueRange:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
AMRQosPerfor
m
BSC6910 SET
UQOSACT
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:When
the parameter isset to YES, the
QoS control
algorithm is
used for AMR
services. When
the parameter is
set to NO, the
QoS control
algorithm is not
used for AMR
services.The
QoS actions of
AMR services
include rate
downsizing,
inter frequency
handover and
inter rat
handover.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlQosAmrInter
FreqHoSwitch
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
frequencyhandover switch
of link stability
control for UL
QoS of AMR
services. When
the parameter is
set to YES,
inter-frequency
handover can be
performed for
AMR services to
ensure the QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
UlQosAmrInter
FreqHoSwitch
BSC6910 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
frequencyhandover switch
of link stability
control for UL
QoS of AMR
services. When
the parameter is
set to YES,
inter-frequency
handover can be
performed for
AMR services to
ensure the QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlQosWAmrInt
erFreqHoSwitch
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
frequencyhandover switch
of link stability
control for UL
QoS of WAMR
services. When
the parameter is
set to YES,
inter-frequency
handover can be
performed for
WAMR services
to ensure the
QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
UlQosWAmrInterFreqHoSwitch
BSC6910 SETUQOSACT
WRFD-020309WRFD-020701
Inter-RATHandover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-frequency
handover switch
of link stability
control for UL
QoS of WAMR
services. When
the parameter is
set to YES,
inter-frequency
handover can be
performed for
WAMR services
to ensure the
QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlQosAmrInter
RatHoSwitch
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
RAT handover switch of link
stability control
for UL QoS of
AMR services.
When the
parameter is set
to YES, inter-
RAT handover
can be
performed for
AMR services to
ensure the QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
UlQosAmrInter
RatHoSwitch
BSC6910 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
RAT handover switch of link
stability control
for UL QoS of
AMR services.
When the
parameter is set
to YES, inter-
RAT handover
can be
performed for
AMR services to
ensure the QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlQosWAmrInt
erRatHoSwitch
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
RAT handover switch of link
stability control
for UL QoS of
WAMR
services. When
the parameter is
set to YES,
inter-RAT
handover can be
performed for
WAMR services
to ensure the
QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
UlQosWAmrInterRatHoSwitch
BSC6910 SETUQOSACT
WRFD-020309WRFD-020701
Inter-RATHandover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-RAT handover
switch of link
stability control
for UL QoS of
WAMR
services. When
the parameter is
set to YES,
inter-RAT
handover can be
performed for
WAMR services
to ensure the
QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlQosAmrInter
FreqHoSwitch
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
frequencyhandover switch
of link stability
control for DL
QoS of AMR
services. When
the parameter is
set to YES,
inter-frequency
handover can be
performed for
AMR services to
ensure the QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
DlQosAmrInter
FreqHoSwitch
BSC6910 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
frequencyhandover switch
of link stability
control for DL
QoS of AMR
services. When
the parameter is
set to YES,
inter-frequency
handover can be
performed for
AMR services to
ensure the QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlQosWAmrInt
erFreqHoSwitch
BSC6900 SET
UQOSACT
WRFD-020304
WRFD-020701
Inter Frequency
Hard Handover Based on DL
QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
frequencyhandover switch
of link stability
control for DL
QoS of WAMR
services. When
the parameter is
set to YES,
inter-frequency
handover can be
performed for
WAMR services
to ensure the
QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
DlQosWAmrInterFreqHoSwitch
BSC6910 SETUQOSACT
WRFD-020304WRFD-020701
Inter FrequencyHard Handover
Based on DL
QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-frequency
handover switch
of link stability
control for DL
QoS of WAMR
services. When
the parameter is
set to YES,
inter-frequency
handover can be
performed for
WAMR services
to ensure the
QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlQosAmrInter
RatHoSwitch
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-010613
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR-WB
(Adaptive Multi
Rate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
RAT handover switch of link
stability control
for DL QoS of
AMR services.
When the
parameter is set
to YES, inter-
RAT handover
can be
performed for
AMR services to
ensure the QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
DlQosAmrInter
RatHoSwitch
BSC6910 SET
UQOSACT
WRFD-020309
WRFD-010613
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR-WB
(Adaptive Multi
Rate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
RAT handover switch of link
stability control
for DL QoS of
AMR services.
When the
parameter is set
to YES, inter-
RAT handover
can be
performed for
AMR services to
ensure the QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlQosWAmrInt
erRatHoSwitch
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-010613
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR-WB
(Adaptive Multi
Rate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-
RAT handover switch of link
stability control
for DL QoS of
WAMR
services. When
the parameter is
set to YES,
inter-RAT
handover can be
performed for
WAMR services
to ensure the
QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
DlQosWAmrInterRatHoSwitch
BSC6910 SETUQOSACT
WRFD-020309WRFD-010613
WRFD-020701
Inter-RATHandover Based
on DL QoS
AMR-WB
(Adaptive Multi
Rate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:Inter-RAT handover
switch of link
stability control
for DL QoS of
WAMR
services. When
the parameter is
set to YES,
inter-RAT
handover can be
performed for
WAMR services
to ensure the
QoS.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6A1
BSC6900 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the
6A1
measurement
condition before
the event 6A1 is
triggered. Event
triggering is
used for UL
measurement.
The event 6A1 is
triggered when
the measured
value is greater
than the absolute
upper threshold
6A1. When the
event 6A1 is
triggered, the
AMR speech
rate should be
lowered. Themeasured value
is reported after
it fulfills the
conditions for
reporting and for
the trigger time
specified by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D320
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6A1
BSC6910 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the
6A1
measurement
condition before
the event 6A1 is
triggered. Event
triggering is
used for UL
measurement.
The event 6A1 is
triggered when
the measured
value is greater
than the absolute
upper threshold
6A1. When the
event 6A1 is
triggered, the
AMR speech
rate should be
lowered. Themeasured value
is reported after
it fulfills the
conditions for
reporting and for
the trigger time
specified by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D320
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6B1
BSC6900 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the
6B1
measurement
condition before
the event 6B1 is
triggered. Event
triggering is
used for UL
measurement.
The event 6B1 is
triggered when
the measured
value is lower
than the absolute
lower threshold
6B1. When the
event 6B1 is
triggered, the
AMR speech
rate is not
lowered. Themeasured value
is reported after
it fulfills the
conditions for
reporting and for
the trigger time
specified by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D320
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6B1
BSC6910 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the
6B1
measurement
condition before
the event 6B1 is
triggered. Event
triggering is
used for UL
measurement.
The event 6B1 is
triggered when
the measured
value is lower
than the absolute
lower threshold
6B1. When the
event 6B1 is
triggered, the
AMR speech
rate is not
lowered. Themeasured value
is reported after
it fulfills the
conditions for
reporting and for
the trigger time
specified by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D320
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6B2
BSC6900 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the
6B2
measurement
condition before
the event 6B2 is
triggered. Event
triggering is
used for UL
measurement.
The event 6B2 is
triggered when
the measured
value is lower
than the absolute
lower threshold
6B2. When the
event 6B2 is
triggered, the
AMR speech
rate should be
raised. Themeasured value
is reported after
it fulfills the
conditions for
reporting and for
the trigger time
specified by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D320
WCDMA RAN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6B2
BSC6910 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the
6B2
measurement
condition before
the event 6B2 is
triggered. Event
triggering is
used for UL
measurement.
The event 6B2 is
triggered when
the measured
value is lower
than the absolute
lower threshold
6B2. When the
event 6B2 is
triggered, the
AMR speech
rate should be
raised. Themeasured value
is reported after
it fulfills the
conditions for
reporting and for
the trigger time
specified by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D320
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6A2
BSC6900 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the
6A2
measurement
condition before
the event 6A2 is
triggered. Event
triggering is
used for UL
measurement.
The event 6A2 is
triggered when
the measured
value is greater
than the absolute
upper threshold
6A2. When the
event 6A2 is
triggered, the
AMR speech
rate is not raised.
The measuredvalue is reported
after it fulfills
the conditions
for reporting and
for the trigger
time specified
by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D320
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6A2
BSC6910 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the
6A2
measurement
condition before
the event 6A2 is
triggered. Event
triggering is
used for UL
measurement.
The event 6A2 is
triggered when
the measured
value is greater
than the absolute
upper threshold
6A2. When the
event 6A2 is
triggered, the
AMR speech
rate is not raised.
The measuredvalue is reported
after it fulfills
the conditions
for reporting and
for the trigger
time specified
by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D320
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6D
BSC6900 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the 6D
measurement
condition before
the event 6D is
triggered. Event
triggering is
used for UL
measurement.
The event 6D is
triggered when
the measured
value is greater
than the absolute
upper threshold
6D. When the
event 6D is
triggered, the
AMR speech
rate should be
lowered. The
measured valueis reported after
it fulfills the
conditions for
reporting and for
the trigger time
specified by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D240
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlAmrTrigTim
e6D
BSC6910 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Durati
on when themeasured value
of AMR keeps
fulfilling the 6D
measurement
condition before
the event 6D is
triggered. Event
triggering is
used for UL
measurement.
The event 6D is
triggered when
the measured
value is greater
than the absolute
upper threshold
6D. When the
event 6D is
triggered, the
AMR speech
rate should be
lowered. The
measured valueis reported after
it fulfills the
conditions for
reporting and for
the trigger time
specified by this
parameter. The
trigger time is
used to prevent
the sudden
change of the
measured value
for being
reported.
GUI Value
Range:D0, D10,
D20, D40, D60,
D80, D100,
D120, D160,
D200, D240,
D320, D640,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
D1280, D2560,
D5000Unit:ms
Actual Value
Range:0, 10, 20,
40, 60, 80, 100,
120, 160, 200,
240, 320, 640,
1280, 2560,
5000
Default
Value:D240
MaxUlTxPower
forConv
BSC6900 ADD
UCELLCAC
MOD
UCELLCAC
WRFD-020101
WRFD-020501
Admission
Control
Open Loop
Power Control
Meaning:Maxi
mum uplink
transmit power
for
conversational
services. For the
detailed
information
about the related
Maximum
allowed UL TX
power IE, see
3GPP TS
25.331.
GUI Value
Range:-50~33
Unit:dBm
Actual Value
Range:-50~33
Default Value:
24
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
MaxUlTxPower
forConv
BSC6910 ADD
UCELLCACMOD
UCELLCAC
WRFD-020101
WRFD-020501
Admission
ControlOpen Loop
Power Control
Meaning:Maxi
mum uplink transmit power
for
conversational
services. For the
detailed
information
about the related
Maximum
allowed UL TX
power IE, see
3GPP TS
25.331.
GUI Value
Range:-50~33
Unit:dBm
Actual Value
Range:-50~33
Default Value:
24
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlThd6A1 BSC6900 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Relati
ve threshold for event 6A1.
Event 6A1 is
reported when
the absolute
threshold for
event 6A1 is
exceeded. Once
the event is
reported,
operations
related to the
QoS control
algorithm will
be triggered in
the uplink.The
following
formula is used
to calculate the
absolute
threshold for
event 6A1:
Absolute
threshold for event 6A1 =
Maximum
uplink transmit
power - Relative
threshold for
event 6A1.
GUI Value
Range:0~82
Unit:dB
Actual Value
Range:0~82
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlThd6A1 BSC6910 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Relati
ve threshold for event 6A1.
Event 6A1 is
reported when
the absolute
threshold for
event 6A1 is
exceeded. Once
the event is
reported,
operations
related to the
QoS control
algorithm will
be triggered in
the uplink.The
following
formula is used
to calculate the
absolute
threshold for
event 6A1:
Absolute
threshold for event 6A1 =
Maximum
uplink transmit
power - Relative
threshold for
event 6A1.
GUI Value
Range:0~82
Unit:dB
Actual Value
Range:0~82
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlThd6B1 BSC6900 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Relati
ve threshold for event 6B1.
Event 6B1 is
reported when
the UEs'
transmit power
is lower than the
absolute
threshold for
event 6B1. Once
the event is
reported,
operations
related to the
QoS control
algorithm will
be stopped in the
uplink. The
following
formula is used
to calculate the
absolute
threshold for
event 6B1:Absolute
threshold for
event 6B1 =
Maximum
uplink transmit
power - Relative
threshold for
event 6B1.
GUI Value
Range:0~82
Unit:dB
Actual Value
Range:0~82
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlThd6B1 BSC6910 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Relati
ve threshold for event 6B1.
Event 6B1 is
reported when
the UEs'
transmit power
is lower than the
absolute
threshold for
event 6B1. Once
the event is
reported,
operations
related to the
QoS control
algorithm will
be stopped in the
uplink. The
following
formula is used
to calculate the
absolute
threshold for
event 6B1:Absolute
threshold for
event 6B1 =
Maximum
uplink transmit
power - Relative
threshold for
event 6B1.
GUI Value
Range:0~82
Unit:dB
Actual Value
Range:0~82
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlThd6A2 BSC6900 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Relati
ve threshold for event 6A2.
Event 6A2 is
reported when
the absolute
threshold for
event 6A2 is
exceeded. Once
the event is
reported, the
RNC is not
allowed to
increase the data
rates of UEs
processing
AMR or BE
services. The
following
formula is used
to calculate the
absolute
threshold for
event 6A2:
Absolutethreshold for
event 6A2 =
Maximum
uplink transmit
power - Relative
threshold for
event 6A2.
GUI Value
Range:0~82
Unit:dB
Actual Value
Range:0~82
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlThd6A2 BSC6910 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Relati
ve threshold for event 6A2.
Event 6A2 is
reported when
the absolute
threshold for
event 6A2 is
exceeded. Once
the event is
reported, the
RNC is not
allowed to
increase the data
rates of UEs
processing
AMR or BE
services. The
following
formula is used
to calculate the
absolute
threshold for
event 6A2:
Absolutethreshold for
event 6A2 =
Maximum
uplink transmit
power - Relative
threshold for
event 6A2.
GUI Value
Range:0~82
Unit:dB
Actual Value
Range:0~82
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlThd6B2 BSC6900 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Relati
ve threshold for event 6B2.
Event 6B2 is
reported when
the UEs'
transmit power
is lower than the
absolute
threshold for
event 6B2. Once
the event is
reported, the
RNC is allowed
to increase the
data rates of UEs
processing
AMR or BE
services. The
following
formula is used
to calculate the
absolute
threshold for
event 6B2:Absolute
threshold for
event 6B2 =
Maximum
uplink transmit
power - Relative
threshold for
event 6B2.
GUI Value
Range:0~82
Unit:dB
Actual Value
Range:0~82
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlThd6B2 BSC6910 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Relati
ve threshold for event 6B2.
Event 6B2 is
reported when
the UEs'
transmit power
is lower than the
absolute
threshold for
event 6B2. Once
the event is
reported, the
RNC is allowed
to increase the
data rates of UEs
processing
AMR or BE
services. The
following
formula is used
to calculate the
absolute
threshold for
event 6B2:Absolute
threshold for
event 6B2 =
Maximum
uplink transmit
power - Relative
threshold for
event 6B2.
GUI Value
Range:0~82
Unit:dB
Actual Value
Range:0~82
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RlMaxDlPwr BSC6900 ADD
UCELLRLPWR
MOD
UCELLRLPW
R
WRFD-140205
WRFD-020501
Voice Service
ExperienceImprovement
for Weak
Reception Ues
Open Loop
Power Control
Meaning:Maxi
mum transmit power of a
downlink radio
link. For details
about this
parameter, see
3GPP TS
25.433.
GUI Value
Range:-350~15
0
Unit:0.1dBActual Value
Range:-35~15
Default
Value:None
RlMaxDlPwr BSC6910 ADD
UCELLRLPW
R
MOD
UCELLRLPW
R
WRFD-140205
WRFD-020501
Voice Service
Experience
Improvement
for Weak
Reception Ues
Open LoopPower Control
Meaning:Maxi
mum transmit
power of a
downlink radio
link. For details
about this parameter, see
3GPP TS
25.433.
GUI Value
Range:-350~15
0
Unit:0.1dB
Actual Value
Range:-35~15
DefaultValue:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlThdE1 BSC6900 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Thresh
old E1 of DLAMR speech
rate adjustment.
Periodical
reporting is used
for DL
measurement.
When the value
calculated on the
basis of the
measurement
report is higher
than the upper
threshold E1,
AMRC lowers
the DL AMR
speech rate by
one level. This
parameter
specifies the
relative
threshold. The
absolute
threshold isequal to the
maximum DL
TX power minus
the relative
threshold.
GUI Value
Range:0~559
Unit:0.1dB
Actual Value
Range:0~55.9
Default Value:
50
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlThdE1 BSC6910 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Thresh
old E1 of DLAMR speech
rate adjustment.
Periodical
reporting is used
for DL
measurement.
When the value
calculated on the
basis of the
measurement
report is higher
than the upper
threshold E1,
AMRC lowers
the DL AMR
speech rate by
one level. This
parameter
specifies the
relative
threshold. The
absolute
threshold isequal to the
maximum DL
TX power minus
the relative
threshold.
GUI Value
Range:0~559
Unit:0.1dB
Actual Value
Range:0~55.9
Default Value:
50
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlThdE2 BSC6900 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Thresh
old E2 of DLAMR speech
rate adjustment.
Periodical
reporting is used
for DL
measurement.
When the value
calculated on the
basis of the
measurement
report is lower
than the upper
threshold E2,
AMRC stops
adjusting the DL
AMR speech
rate. This
parameter
specifies the
relative
threshold. The
absolute
threshold isequal to the
maximum DL
TX power minus
the relative
threshold.
GUI Value
Range:0~559
Unit:0.1dB
Actual Value
Range:0~55.9
Default Value:
50
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlThdE2 BSC6910 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Thresh
old E2 of DLAMR speech
rate adjustment.
Periodical
reporting is used
for DL
measurement.
When the value
calculated on the
basis of the
measurement
report is lower
than the upper
threshold E2,
AMRC stops
adjusting the DL
AMR speech
rate. This
parameter
specifies the
relative
threshold. The
absolute
threshold isequal to the
maximum DL
TX power minus
the relative
threshold.
GUI Value
Range:0~559
Unit:0.1dB
Actual Value
Range:0~55.9
Default Value:
50
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlThdF1 BSC6900 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Thresh
old F1 of DLAMR speech
rate adjustment.
Periodical
reporting is used
for DL
measurement.
When the value
calculated on the
basis of the
measurement
report is lower
than the lower
threshold F1,
AMRC raises
the DL AMR
speech rate by
one level. This
parameter
specifies the
relative
threshold. The
absolute
threshold isequal to the
maximum DL
TX power minus
the relative
threshold.
GUI Value
Range:1~560
Unit:0.1dB
Actual Value
Range:0.1~56
Default Value:
120
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlThdF1 BSC6910 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Thresh
old F1 of DLAMR speech
rate adjustment.
Periodical
reporting is used
for DL
measurement.
When the value
calculated on the
basis of the
measurement
report is lower
than the lower
threshold F1,
AMRC raises
the DL AMR
speech rate by
one level. This
parameter
specifies the
relative
threshold. The
absolute
threshold isequal to the
maximum DL
TX power minus
the relative
threshold.
GUI Value
Range:1~560
Unit:0.1dB
Actual Value
Range:0.1~56
Default Value:
120
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlThdF2 BSC6900 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Thresh
old F2 of DLAMR speech
rate adjustment.
Periodical
reporting is used
for DL
measurement.
When the value
calculated on the
basis of the
measurement
report is higher
than the lower
threshold F2,
AMRC stops
adjusting the DL
AMR speech
rate. This
parameter
specifies the
relative
threshold. The
absolute
threshold isequal to the
maximum DL
TX power minus
the relative
threshold.
GUI Value
Range:1~560
Unit:0.1dB
Actual Value
Range:0.1~56
Default Value:
120
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlThdF2 BSC6910 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Thresh
old F2 of DLAMR speech
rate adjustment.
Periodical
reporting is used
for DL
measurement.
When the value
calculated on the
basis of the
measurement
report is higher
than the lower
threshold F2,
AMRC stops
adjusting the DL
AMR speech
rate. This
parameter
specifies the
relative
threshold. The
absolute
threshold isequal to the
maximum DL
TX power minus
the relative
threshold.
GUI Value
Range:1~560
Unit:0.1dB
Actual Value
Range:0.1~56
Default Value:
120
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlAmrTrigTim
eE
BSC6900 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Durati
on from whenthe AMR TX
power is beyond
the threshold Ea
or below the
threshold Eb to
when the event
Ea or Eb is
triggered. This
parameter is
used to avoid
faulty reporting
due to instability
of power.
GUI Value
Range:1~6000
Unit:10ms
Actual Value
Range:
10~60000
Default Value:
64
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlAmrTrigTim
eE
BSC6910 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Durati
on from whenthe AMR TX
power is beyond
the threshold Ea
or below the
threshold Eb to
when the event
Ea or Eb is
triggered. This
parameter is
used to avoid
faulty reporting
due to instability
of power.
GUI Value
Range:1~6000
Unit:10ms
Actual Value
Range:
10~60000
Default Value:
64
ChoiceRptUnit-
ForAmrE
BSC6900 ADD
UCELLQUALI
TYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020309
WRFD-020701
Inter-RAT
Handover Based
on DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:This
parameter
specifies the
reporting period
of the event E of
the AMR
service. The unit
of the reporting
period can be 10
ms or minute.
GUI ValueRange:TEN_M
SEC, MIN
Unit:None
Actual Value
Range:TEN_M
SEC, MIN
Default
Value:TEN_MS
EC
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ChoiceRptUnit-
ForAmrE
BSC6910 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:This
parameter specifies the
reporting period
of the event E of
the AMR
service. The unit
of the reporting
period can be 10
ms or minute.
GUI Value
Range:TEN_M
SEC, MIN
Unit:None
Actual Value
Range:TEN_M
SEC, MIN
Default
Value:TEN_MS
EC
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
TenMsecForAm
rE
BSC6900 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020309
WRFD-020304
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
Inter Frequency
Hard Handover
Based on DL
QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:This
parameter isvalid when the
corresponding
parameter
related to the
reporting period
unit for the event
E of AMR
service is set to
TEN_MSEC.
The DL code TX
power is
reported
periodically
after the event
Ea is reported.
This parameter
specifies the
reporting period.
If the parameter
is set to A, the
reporting period
is A x 10 ms.
GUI ValueRange:1~6000
Unit:10ms
Actual Value
Range:
10~60000
Default Value:
480
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
TenMsecForAm
rE
BSC6910 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020309
WRFD-020304
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
Inter Frequency
Hard Handover
Based on DL
QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:This
parameter isvalid when the
corresponding
parameter
related to the
reporting period
unit for the event
E of AMR
service is set to
TEN_MSEC.
The DL code TX
power is
reported
periodically
after the event
Ea is reported.
This parameter
specifies the
reporting period.
If the parameter
is set to A, the
reporting period
is A x 10 ms.
GUI ValueRange:1~6000
Unit:10ms
Actual Value
Range:
10~60000
Default Value:
480
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
MinForAmrE BSC6900 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:This
parameter isvalid when the
corresponding
parameter
related to the
reporting period
unit for the event
E of AMR
service is set to
MIN. The DL
code TX power
is reported
periodically
after the event
E1 is reported.
This parameter
specifies the
reporting period.
GUI Value
Range:1~60
Unit:min
Actual Value
Range:1~60Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
MinForAmrE BSC6910 ADD
UCELLQUALITYMEAS
MOD
UCELLQUALI
TYMEAS
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:This
parameter isvalid when the
corresponding
parameter
related to the
reporting period
unit for the event
E of AMR
service is set to
MIN. The DL
code TX power
is reported
periodically
after the event
E1 is reported.
This parameter
specifies the
reporting period.
GUI Value
Range:1~60
Unit:min
Actual Value
Range:1~60Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ThdEa BSC6900 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020304
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
Inter Frequency
Hard Handover
Based on DL
QoS
AMR/WB-
AMR SpeechRates Control
Meaning:Relati
ve threshold for event Ea. Event
Ea is reported
when the
absolute
threshold for
event Ea is
exceeded. Once
the event is
reported,
operations
related to the
QoS control
algorithm will
be triggered in
the downlink.
The following
formula is used
to calculate the
absolute
threshold for
event Ea:
Absolute
threshold for event Ea =
Maximum
downlink
transmit power
for RLs -
Relative
threshold for
event Ea.
GUI Value
Range:0~56
Unit:0.5dB
Actual Value
Range:0~28
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ThdEa BSC6910 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020304
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
Inter Frequency
Hard Handover
Based on DL
QoS
AMR/WB-
AMR SpeechRates Control
Meaning:Relati
ve threshold for event Ea. Event
Ea is reported
when the
absolute
threshold for
event Ea is
exceeded. Once
the event is
reported,
operations
related to the
QoS control
algorithm will
be triggered in
the downlink.
The following
formula is used
to calculate the
absolute
threshold for
event Ea:
Absolute
threshold for event Ea =
Maximum
downlink
transmit power
for RLs -
Relative
threshold for
event Ea.
GUI Value
Range:0~56
Unit:0.5dB
Actual Value
Range:0~28
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ThdEb BSC6900 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020304
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
Inter Frequency
Hard Handover
Based on DL
QoS
AMR/WB-
AMR SpeechRates Control
Meaning:Relati
ve threshold for event Eb. Event
Eb is reported
when the
downlink code
transmit power
is lower than the
absolute
threshold for
event Eb. Once
the event is
reported,
operations
related to the
QoS control
algorithm will
be stopped in the
downlink. The
following
formula is used
to calculate the
absolute
threshold for
event Eb:Absolute
threshold for
event Eb =
Maximum
downlink
transmit power
for RLs -
Relative
threshold for
event Eb.
GUI ValueRange:0~56
Unit:0.5dB
Actual Value
Range:0~28
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ThdEb BSC6910 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-020304
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
Inter Frequency
Hard Handover
Based on DL
QoS
AMR/WB-
AMR SpeechRates Control
Meaning:Relati
ve threshold for event Eb. Event
Eb is reported
when the
downlink code
transmit power
is lower than the
absolute
threshold for
event Eb. Once
the event is
reported,
operations
related to the
QoS control
algorithm will
be stopped in the
downlink. The
following
formula is used
to calculate the
absolute
threshold for
event Eb:Absolute
threshold for
event Eb =
Maximum
downlink
transmit power
for RLs -
Relative
threshold for
event Eb.
GUI ValueRange:0~56
Unit:0.5dB
Actual Value
Range:0~28
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
AmrUlRateAdj
TimerLen
BSC6900 SET
UQOSACT
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Timer
for triggering asecond
adjustment of
the UL AMR
mode. This
parameter
specifies the
duration of
waiting for the
voice quality
enhanced
acknowledgeme
nt after the UL
AMR mode
adjustment
when the
associated
command is
delivered. The
UL AMRC rate
adjust timer
starts when
AMRC mode
adjustment procedure is
triggered, and
stops when the
next
measurement
report is
received. If no
measurement
report is
received when
the UL AMRC
timer expires,
you can infer
that the
measured value
remains in the
same state as
that before the
previous UL
AMRC mode
adjustment. The
previous AMRC
mode
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
adjustment is
not effective,and another
adjustment is
required.
GUI Value
Range:
20~64000
Unit:ms
Actual Value
Range:
20~64000
Default Value:
3000
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
AmrUlRateAdj
TimerLen
BSC6910 SET
UQOSACT
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Timer
for triggering asecond
adjustment of
the UL AMR
mode. This
parameter
specifies the
duration of
waiting for the
voice quality
enhanced
acknowledgeme
nt after the UL
AMR mode
adjustment
when the
associated
command is
delivered. The
UL AMRC rate
adjust timer
starts when
AMRC mode
adjustment procedure is
triggered, and
stops when the
next
measurement
report is
received. If no
measurement
report is
received when
the UL AMRC
timer expires,
you can infer
that the
measured value
remains in the
same state as
that before the
previous UL
AMRC mode
adjustment. The
previous AMRC
mode
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
adjustment is
not effective,and another
adjustment is
required.
GUI Value
Range:
20~64000
Unit:ms
Actual Value
Range:
20~64000
Default Value:
3000
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WAmrUlRateA
djTimerLen
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Timer
for triggering asecond
adjustment of
the UL WAMR
mode. This
parameter
specifies the
duration of
waiting for the
voice quality
enhanced
acknowledgeme
nt after the UL
WAMR mode
adjustment
when the
associated
command is
delivered. The
UL WAMR rate
adjust timer
starts when
AMRC mode
adjustment procedure is
triggered, and
stops when the
next
measurement
report is
received. If no
measurement
report is
received when
the UL AMRC
timer expires,
you can infer
that the
measured value
remains in the
same state as
that before the
previous UL
AMRC mode
adjustment. The
previous AMRC
mode
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
adjustment is
not effective,and another
adjustment is
required.
GUI Value
Range:
20~64000
Unit:ms
Actual Value
Range:
20~64000
Default Value:
3000
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WAmrUlRateA
djTimerLen
BSC6910 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Timer
for triggering asecond
adjustment of
the UL WAMR
mode. This
parameter
specifies the
duration of
waiting for the
voice quality
enhanced
acknowledgeme
nt after the UL
WAMR mode
adjustment
when the
associated
command is
delivered. The
UL WAMR rate
adjust timer
starts when
AMRC mode
adjustment procedure is
triggered, and
stops when the
next
measurement
report is
received. If no
measurement
report is
received when
the UL AMRC
timer expires,
you can infer
that the
measured value
remains in the
same state as
that before the
previous UL
AMRC mode
adjustment. The
previous AMRC
mode
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
adjustment is
not effective,and another
adjustment is
required.
GUI Value
Range:
20~64000
Unit:ms
Actual Value
Range:
20~64000
Default Value:
3000
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
GoldMaxMode BSC6900 SET
UAMRCWB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for gold users. If
IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for gold
users. This
parameter doesnot take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAM
R_BITRATE_6.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
RATE_18.25K,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WBAMR_BIT
RATE_19.85K,WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,
23.05, 23.85Default
Value:WBAMR
_BITRATE_23.
85K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
GoldMaxMode BSC6910 SET
UAMRCWB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for gold users. If
IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for gold
users. This
parameter doesnot take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAM
R_BITRATE_6.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
RATE_18.25K,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WBAMR_BIT
RATE_19.85K,WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,
23.05, 23.85Default
Value:WBAMR
_BITRATE_23.
85K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SilverMaxMode BSC6900 SET
UAMRCWB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for silver users.
If IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for
silver users. This
parameter doesnot take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAM
R_BITRATE_6.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
RATE_18.25K,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WBAMR_BIT
RATE_19.85K,WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,
23.05, 23.85Default
Value:WBAMR
_BITRATE_23.
85K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SilverMaxMode BSC6910 SET
UAMRCWB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for silver users.
If IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for
silver users. This
parameter doesnot take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAM
R_BITRATE_6.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
RATE_18.25K,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WBAMR_BIT
RATE_19.85K,WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,
23.05, 23.85Default
Value:WBAMR
_BITRATE_23.
85K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CopperMaxMo
de
BSC6900 SET
UAMRCWB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for copper users.
If IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for
copper users.
This parameter does not take
effect for
incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAMR_BITRATE_6
.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RATE_18.25K,
WBAMR_BITRATE_19.85K,
WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,23.05, 23.85
Default
Value:WBAMR
_BITRATE_23.
85K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CopperMaxMo
de
BSC6910 SET
UAMRCWB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for copper users.
If IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for
copper users.
This parameter does not take
effect for
incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAMR_BITRATE_6
.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RATE_18.25K,
WBAMR_BITRATE_19.85K,
WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,23.05, 23.85
Default
Value:WBAMR
_BITRATE_23.
85K
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
GoldMaxMode BSC6900 ADD
UCELLAMRCWB
MOD
UCELLAMRC
WB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for gold users. If
IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for gold
users. This
parameter doesnot take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAM
R_BITRATE_6.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
RATE_18.25K,
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WBAMR_BIT
RATE_19.85K,WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,
23.05, 23.85Default
Value:WBAMR
_BITRATE_23.
85K
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
GoldMaxMode BSC6910 ADD
UCELLAMRCWB
MOD
UCELLAMRC
WB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for gold users. If
IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for gold
users. This
parameter doesnot take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAM
R_BITRATE_6.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
RATE_18.25K,
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WBAMR_BIT
RATE_19.85K,WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,
23.05, 23.85Default
Value:WBAMR
_BITRATE_23.
85K
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SilverMaxMode BSC6900 ADD
UCELLAMRCWB
MOD
UCELLAMRC
WB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for silver users.
If IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for
silver users. This
parameter doesnot take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAM
R_BITRATE_6.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
RATE_18.25K,
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WBAMR_BIT
RATE_19.85K,WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,
23.05, 23.85Default
Value:WBAMR
_BITRATE_23.
85K
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SilverMaxMode BSC6910 ADD
UCELLAMRCWB
MOD
UCELLAMRC
WB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for silver users.
If IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for
silver users. This
parameter doesnot take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAM
R_BITRATE_6.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
RATE_18.25K,
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
WBAMR_BIT
RATE_19.85K,WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,
23.05, 23.85Default
Value:WBAMR
_BITRATE_23.
85K
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CopperMaxMo
de
BSC6900 ADD
UCELLAMRCWB
MOD
UCELLAMRC
WB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for copper users.
If IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for
copper users.
This parameter does not take
effect for
incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAMR_BITRATE_6
.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RATE_18.25K,
WBAMR_BITRATE_19.85K,
WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,23.05, 23.85
Default
Value:WBAMR
_BITRATE_23.
85K
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CopperMaxMo
de
BSC6910 ADD
UCELLAMRCWB
MOD
UCELLAMRC
WB
WRFD-010613
WRFD-020701
AMR-WB
(Adaptive MultiRate Wide
Band)
AMR/WB-
AMR Speech
Rates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
wideband AMR
speech services
for copper users.
If IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of wideband
AMR speech
services for
copper users.
This parameter does not take
effect for
incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:WBAMR_BITRATE_6
.60K,
WBAMR_BIT
RATE_8.85K,
WBAMR_BIT
RATE_12.65K,
WBAMR_BIT
RATE_14.25K,
WBAMR_BIT
RATE_15.85K,
WBAMR_BIT
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RATE_18.25K,
WBAMR_BITRATE_19.85K,
WBAMR_BIT
RATE_23.05K,
WBAMR_BIT
RATE_23.85K
Unit:kbit/s
Actual Value
Range:6.60,
8.85, 12.65,
14.25, 15.85,
18.25, 19.85,23.05, 23.85
Default
Value:WBAMR
_BITRATE_23.
85K
RabIndex BSC6900 ADD
UTYPRABSE
MISTATICTF
MOD
UTYPRABSEMISTATICTF
RMV
UTYPRABSE
MISTATICTF
WRFD-010504
WRFD-010613
WRFD-010501
WRFD-010503
WRFD-010502
Background
QoS Class
AMR-WB
(Adaptive Multi
Rate WideBand)
Conversational
QoS Class
Interactive QoS
Class
Streaming QoS
Class
Meaning:This
parameter
specifies the
index number
that uniquely
identifies the
configuration of
a typical RAB.
GUI Value
Range:0~121
Unit:None
Actual Value
Range:0~121
Default
Value:None
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RabIndex BSC6910 ADD
UTYPRABSEMISTATICTF
MOD
UTYPRABSE
MISTATICTF
RMV
UTYPRABSE
MISTATICTF
WRFD-010504
WRFD-010613
WRFD-010501
WRFD-010503
WRFD-010502
Background
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
Conversational
QoS Class
Interactive QoS
Class
Streaming QoS
Class
Meaning:This
parameter specifies the
index number
that uniquely
identifies the
configuration of
a typical RAB.
GUI Value
Range:0~121
Unit:None
Actual Value
Range:0~121
Default
Value:None
WCDMA RAN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SubflowIndex BSC6900 ADD
UTYPRABSEMISTATICTF
MOD
UTYPRABSE
MISTATICTF
RMV
UTYPRABSE
MISTATICTF
WRFD-010504
WRFD-010613
WRFD-010501
WRFD-010503
WRFD-010502
Background
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
Conversational
QoS Class
Interactive QoS
Class
Streaming QoS
Class
Meaning:This
parameter specifies the
logical serial
number of a
subflow for the
typical RAB. A
bearer may use
several subflows
for transmission.
For example,
AMR speech
service may use
three traffic
subflows, which
correspond to
three transport
channels.
Subflows 0, 1,
and 2 carry bit
flows of classes
A, B, and C
respectively. For
other types of
RABs, there isonly one
subflow.
Therefore, the
traffic subflow
index is set to 0,
which
corresponds to
one transport
channel.
GUI Value
Range:0~2Unit:None
Actual Value
Range:0~2
Default
Value:None
WCDMA RAN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SubflowIndex BSC6910 ADD
UTYPRABSEMISTATICTF
MOD
UTYPRABSE
MISTATICTF
RMV
UTYPRABSE
MISTATICTF
WRFD-010504
WRFD-010613
WRFD-010501
WRFD-010503
WRFD-010502
Background
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
Conversational
QoS Class
Interactive QoS
Class
Streaming QoS
Class
Meaning:This
parameter specifies the
logical serial
number of a
subflow for the
typical RAB. A
bearer may use
several subflows
for transmission.
For example,
AMR speech
service may use
three traffic
subflows, which
correspond to
three transport
channels.
Subflows 0, 1,
and 2 carry bit
flows of classes
A, B, and C
respectively. For
other types of
RABs, there isonly one
subflow.
Therefore, the
traffic subflow
index is set to 0,
which
corresponds to
one transport
channel.
GUI Value
Range:0~2Unit:None
Actual Value
Range:0~2
Default
Value:None
WCDMA RAN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlRateMatchin-
gAttr
BSC6900 ADD
UTYPRABSEMISTATICTF
MOD
UTYPRABSE
MISTATICTF
WRFD-021000
WRFD-010613
Transport
ChannelManagement
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:This
parameter specifies the
weight of
processing
(repeating or
deleting) data
bits on the
corresponding
transport
channel during
uplink rate
matching. Rate
Matching
Attribute
(RMA) is a
semi-static
parameter
provided by the
higher layer for
each traffic
channel
according to
QoS. This
parameter isvalid in the case
of multiplexing
of transport
channels, that is,
when multiple
transport
channels are
combined into a
Coded
Composite
Transport
Channel
(CCTrCH). This
parameter takes
a value relative
to the RMA
values of other
multiplexing
transport
channels. For
details of this
parameter, see
3GPP TS
WCDMA RAN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
25.212. This
parameter is anadvanced
parameter. To
modify this
parameter,
contact Huawei
Customer
Service Center
for technical
support.
GUI Value
Range:1~256
Unit:None
Actual Value
Range:1~256
Default
Value:None
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlRateMatchin-
gAttr
BSC6910 ADD
UTYPRABSEMISTATICTF
MOD
UTYPRABSE
MISTATICTF
WRFD-021000
WRFD-010613
Transport
ChannelManagement
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:This
parameter specifies the
weight of
processing
(repeating or
deleting) data
bits on the
corresponding
transport
channel during
uplink rate
matching. Rate
Matching
Attribute
(RMA) is a
semi-static
parameter
provided by the
higher layer for
each traffic
channel
according to
QoS. This
parameter isvalid in the case
of multiplexing
of transport
channels, that is,
when multiple
transport
channels are
combined into a
Coded
Composite
Transport
Channel
(CCTrCH). This
parameter takes
a value relative
to the RMA
values of other
multiplexing
transport
channels. For
details of this
parameter, see
3GPP TS
WCDMA RAN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
25.212. This
parameter is anadvanced
parameter. To
modify this
parameter,
contact Huawei
Customer
Service Center
for technical
support.
GUI Value
Range:1~256
Unit:None
Actual Value
Range:1~256
Default
Value:None
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlRateMatchin-
gAttr
BSC6900 ADD
UTYPRABSEMISTATICTF
MOD
UTYPRABSE
MISTATICTF
WRFD-021000
WRFD-010613
Transport
ChannelManagement
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:This
parameter specifies the
weight of
processing
(repeating or
deleting) data
bits on the
corresponding
transport
channel during
downlink rate
matching. RMA
is a semi-static
parameter
provided by the
higher layer for
each traffic
channel
according to
QoS. This
parameter is
valid in the case
of multiplexing
of transportchannels, that is,
when multiple
transport
channels are
combined into a
CCTrCH. This
parameter takes
a value relative
to the RMA
values of other
multiplexing
transport
channels. For
details of this
parameter, see
3GPP TS
25.212. This
parameter is an
advanced
parameter. To
modify this
parameter,
contact Huawei
WCDMA RAN
AMR Feature Parameter Description 9 Parameters
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
Customer
Service Center for technical
support.
GUI Value
Range:1~256
Unit:None
Actual Value
Range:1~256
Default
Value:None
WCDMA RAN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlRateMatchin-
gAttr
BSC6910 ADD
UTYPRABSEMISTATICTF
MOD
UTYPRABSE
MISTATICTF
WRFD-021000
WRFD-010613
Transport
ChannelManagement
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:This
parameter specifies the
weight of
processing
(repeating or
deleting) data
bits on the
corresponding
transport
channel during
downlink rate
matching. RMA
is a semi-static
parameter
provided by the
higher layer for
each traffic
channel
according to
QoS. This
parameter is
valid in the case
of multiplexing
of transportchannels, that is,
when multiple
transport
channels are
combined into a
CCTrCH. This
parameter takes
a value relative
to the RMA
values of other
multiplexing
transport
channels. For
details of this
parameter, see
3GPP TS
25.212. This
parameter is an
advanced
parameter. To
modify this
parameter,
contact Huawei
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
Customer
Service Center for technical
support.
GUI Value
Range:1~256
Unit:None
Actual Value
Range:1~256
Default
Value:None
RabIndex BSC6900 ACTUTYPRAB
ADD
UTYPRABBAS
IC
DEA
UTYPRAB
MOD
UTYPRABBAS
IC
RMVUTYPRAB
WRFD-010504
WRFD-010613
WRFD-010501
WRFD-010503
WRFD-010502
BackgroundQoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Conversational
QoS Class
Interactive QoS
Class
Streaming QoSClass
Meaning:Indexnumber
uniquely
identifying the
configuration of
the typical
service.
GUI Value
Range:
0~6;11~19;21~
28;40~69;70~1
13;114~121
Unit:None
Actual Value
Range:0~6,
11~19, 21~28,
40~69, 70~113,
114~121
Default
Value:None
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
RabIndex BSC6910 ACT
UTYPRABADD
UTYPRABBAS
IC
DEA
UTYPRAB
MOD
UTYPRABBAS
IC
RMV
UTYPRAB
WRFD-010504
WRFD-010613
WRFD-010501
WRFD-010503
WRFD-010502
Background
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
Conversational
QoS Class
Interactive QoS
Class
Streaming QoS
Class
Meaning:Index
number uniquely
identifying the
configuration of
the typical
service.
GUI Value
Range:
0~6;11~19;21~
28;40~69;70~1
13;114~121
Unit:NoneActual Value
Range:0~6,
11~19, 21~28,
40~69, 70~113,
114~121
Default
Value:None
UlQosAmrAdjS
witch
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Based
on DL QoSAMR/WB-
AMR Speech
Rates Control
Meaning:Rate
adjustment
switch of link stability control
for UL QoS of
AMR services.
When the
parameter is set
to YES, UL rate
of AMR
services can be
adjusted.
GUI Value
Range:NO, YESUnit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlQosAmrAdjS
witch
BSC6910 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Rate
adjustmentswitch of link
stability control
for UL QoS of
AMR services.
When the
parameter is set
to YES, UL rate
of AMR
services can be
adjusted.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
UlQosWAmrAd
jSwitch
BSC6900 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Based
on DL QoS
AMR/WB-AMR Speech
Rates Control
Meaning:Rate
adjustment
switch of link
stability controlfor UL QoS of
WAMR
services. When
the parameter is
set to YES, UL
rate of WAMR
services can be
adjusted.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlQosWAmrAd
jSwitch
BSC6910 SET
UQOSACT
WRFD-020309
WRFD-020701
Inter-RAT
Handover Basedon DL QoS
AMR/WB-
AMR Speech
Rates Control
Meaning:Rate
adjustmentswitch of link
stability control
for UL QoS of
WAMR
services. When
the parameter is
set to YES, UL
rate of WAMR
services can be
adjusted.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
DlQosAmrAdjS
witch
BSC6900 SET
UQOSACT
WRFD-020701 AMR/WB-
AMR Speech
Rates Control
Meaning:Rate
adjustment
switch of link
stability controlfor DL QoS of
AMR services.
When the
parameter is set
to YES, DL rate
of AMR
services can be
adjusted.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlQosAmrAdjS
witch
BSC6910 SET
UQOSACT
WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:Rate
adjustmentswitch of link
stability control
for DL QoS of
AMR services.
When the
parameter is set
to YES, DL rate
of AMR
services can be
adjusted.
GUI Value
Range:NO, YES
Unit:None
Actual Value
Range:NO, YES
Default
Value:NO
StaBlkNum5A BSC6900 ADD
UTYPRABQU
ALITYMEAS
MODUTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-010613
Dynamic
Channel
Configuration
Control (DCCC)Inter-RAT
Handover Based
on DL QoS
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:Lengt
h of the sliding
window for the
RNC tocalculate bad
CRCs. Within
this length, the
RNC calculates
bad CRCs.
Event 5A is
triggered if the
number of bad
CRCs is larger
than the value
for "Thd5A".
GUI Value
Range:1~512
Unit:None
Actual Value
Range:1~512
Default Value:
500
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
StaBlkNum5A BSC6910 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-020309
WRFD-010613
Dynamic
ChannelConfiguration
Control (DCCC)
Inter-RAT
Handover Based
on DL QoS
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:Lengt
h of the slidingwindow for the
RNC to
calculate bad
CRCs. Within
this length, the
RNC calculates
bad CRCs.
Event 5A is
triggered if the
number of bad
CRCs is larger
than the value
for "Thd5A".
GUI Value
Range:1~512
Unit:None
Actual Value
Range:1~512
Default Value:
500
Thd5A BSC6900 ADDUTYPRABQU
ALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101WRFD-010613
DynamicChannel
Configuration
Control (DCCC)
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:Threshold for the
number of bad
CRCs. Within
the length
specified by
"StaBlkNum5A
", event 5A is
triggered if the
number of bad
CRCs is larger
than this
threshold.
GUI Value
Range:1~512
Unit:None
Actual Value
Range:1~512
Default Value:
280
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
Thd5A BSC6910 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-010613
Dynamic
ChannelConfiguration
Control (DCCC)
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:Thresh
old for thenumber of bad
CRCs. Within
the length
specified by
"StaBlkNum5A
", event 5A is
triggered if the
number of bad
CRCs is larger
than this
threshold.
GUI Value
Range:1~512
Unit:None
Actual Value
Range:1~512
Default Value:
280
HangBlockNum
5A
BSC6900 ADD
UTYPRABQU
ALITYMEASMOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-010613
Dynamic
Channel
ConfigurationControl (DCCC)
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:Numb
er of hang CRCs
after event 5A istriggered. Event
5A will not be
reported again if
the number of
CRCs received
after one such
event is reported
is less than the
value of this
parameter. This
parameter helps
prevent this
event from
being repeatedly
reported.
GUI Value
Range:1~512
Unit:None
Actual Value
Range:1~512
Default Value:
512
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
HangBlockNum
5A
BSC6910 ADD
UTYPRABQUALITYMEAS
MOD
UTYPRABQU
ALITYMEAS
WRFD-021101
WRFD-010613
Dynamic
ChannelConfiguration
Control (DCCC)
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Meaning:Numb
er of hang CRCsafter event 5A is
triggered. Event
5A will not be
reported again if
the number of
CRCs received
after one such
event is reported
is less than the
value of this
parameter. This
parameter helps
prevent this
event from
being repeatedly
reported.
GUI Value
Range:1~512
Unit:None
Actual Value
Range:1~512
Default Value:512
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
GoldMaxMode BSC6900 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
narrowband
AMR speech
services for gold
users. If IUUP
V2 is in use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of
narrowband
AMR speech
services for gold
users. This parameter does
not take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:NBAMR _BITRATE_4.7
5K,
NBAMR_BITR
ATE_5.15K,
NBAMR_BITR
ATE_5.90K,
NBAMR_BITR
ATE_6.70K,
NBAMR_BITR
ATE_7.40K,
NBAMR_BITR
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ATE_7.95K,
NBAMR_BITR ATE_10.20K,
NBAMR_BITR
ATE_12.20K
Unit:kbit/s
Actual Value
Range:4.75K,
5.15K, 5.90K,
6.70K, 7.40K,
7.95K, 10.20K,
12.20K
DefaultValue:NBAMR
_BITRATE_12.
20K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
GoldMaxMode BSC6910 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
narrowband
AMR speech
services for gold
users. If IUUP
V2 is in use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of
narrowband
AMR speech
services for gold
users. This parameter does
not take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:NBAMR _BITRATE_4.7
5K,
NBAMR_BITR
ATE_5.15K,
NBAMR_BITR
ATE_5.90K,
NBAMR_BITR
ATE_6.70K,
NBAMR_BITR
ATE_7.40K,
NBAMR_BITR
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ATE_7.95K,
NBAMR_BITR ATE_10.20K,
NBAMR_BITR
ATE_12.20K
Unit:kbit/s
Actual Value
Range:4.75K,
5.15K, 5.90K,
6.70K, 7.40K,
7.95K, 10.20K,
12.20K
DefaultValue:NBAMR
_BITRATE_12.
20K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SilverMaxMode BSC6900 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
narrowband
AMR speech
services for
silver users. If
IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of
narrowband
AMR speech
services for silver users. This
parameter does
not take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI ValueRange:NBAMR
_BITRATE_4.7
5K,
NBAMR_BITR
ATE_5.15K,
NBAMR_BITR
ATE_5.90K,
NBAMR_BITR
ATE_6.70K,
NBAMR_BITR
ATE_7.40K,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
NBAMR_BITR
ATE_7.95K, NBAMR_BITR
ATE_10.20K,
NBAMR_BITR
ATE_12.20K
Unit:kbit/s
Actual Value
Range:4.75,
5.15, 5.90, 6.70,
7.40, 7.95,
10.20, 12.20
DefaultValue:NBAMR
_BITRATE_12.
20K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
SilverMaxMode BSC6910 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
narrowband
AMR speech
services for
silver users. If
IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of
narrowband
AMR speech
services for silver users. This
parameter does
not take effect
for incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI ValueRange:NBAMR
_BITRATE_4.7
5K,
NBAMR_BITR
ATE_5.15K,
NBAMR_BITR
ATE_5.90K,
NBAMR_BITR
ATE_6.70K,
NBAMR_BITR
ATE_7.40K,
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
NBAMR_BITR
ATE_7.95K, NBAMR_BITR
ATE_10.20K,
NBAMR_BITR
ATE_12.20K
Unit:kbit/s
Actual Value
Range:4.75,
5.15, 5.90, 6.70,
7.40, 7.95,
10.20, 12.20
DefaultValue:NBAMR
_BITRATE_12.
20K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CopperMaxMo
de
BSC6900 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
narrowband
AMR speech
services for
copper users. If
IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of
narrowband
AMR speech
services for copper users.
This parameter
does not take
effect for
incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:NBAMR
_BITRATE_4.7
5K,
NBAMR_BITR
ATE_5.15K,
NBAMR_BITR
ATE_5.90K,
NBAMR_BITR
ATE_6.70K,
NBAMR_BITR
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ATE_7.40K,
NBAMR_BITR ATE_7.95K,
NBAMR_BITR
ATE_10.20K,
NBAMR_BITR
ATE_12.20K
Unit:kbit/s
Actual Value
Range:4.75,
5.15, 5.90, 6.70,
7.40, 7.95,
10.20, 12.20Default
Value:NBAMR
_BITRATE_12.
20K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CopperMaxMo
de
BSC6910 SET UAMRC WRFD-020701 AMR/WB-
AMR SpeechRates Control
Meaning:If
IUUP V1 is inuse, the
parameter
specifies the
maximum
uplink rate and
maximum
downlink rate of
narrowband
AMR speech
services for
copper users. If
IUUP V2 is in
use, the
parameter
specifies the
maximum
uplink rate and
maximum initial
downlink access
rate of
narrowband
AMR speech
services for copper users.
This parameter
does not take
effect for
incoming
handover AMR
speech services
or incoming
static relocation
AMR speech
services.
GUI Value
Range:NBAMR
_BITRATE_4.7
5K,
NBAMR_BITR
ATE_5.15K,
NBAMR_BITR
ATE_5.90K,
NBAMR_BITR
ATE_6.70K,
NBAMR_BITR
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ATE_7.40K,
NBAMR_BITR ATE_7.95K,
NBAMR_BITR
ATE_10.20K,
NBAMR_BITR
ATE_12.20K
Unit:kbit/s
Actual Value
Range:4.75,
5.15, 5.90, 6.70,
7.40, 7.95,
10.20, 12.20Default
Value:NBAMR
_BITRATE_12.
20K
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlLdrFirstActio
n
BSC6900 ADD
UCELLLDR MOD
UCELLLDR
WRFD-150216
WRFD-150217
WRFD-070004
WRFD-020103
WRFD-010506
WRFD-020106
WRFD-020108
WRFD-010616
03
WRFD-021101
WRFD-020701
WRFD-020306
Load Based PS
Redirectionfrom UMTS to
LTE
Load Based PS
Handover from
UMTS to LTE
Load Based
GSM and
UMTS
Handover
Enhancement
Based on Iur-gInter Frequency
Load Balance
RAB Quality of
Service
Renegotiation
over Iu Interface
Load
Reshuffling
Code Resource
ManagementMBMS Load
Control
Dynamic
Channel
Configuration
Control (DCCC)
AMR/WB-
AMR Speech
Rates Control
Inter-RAT
Handover Based
on Load
Meaning:NOA
CT: No loadreshuffling
action is taken.
INTERFREQL
DHO: The inter-
frequency load
handover is
performed.
BERATERED:
Channels are
reconfigured for
the BE service.
QOSRENEGO:
The
renegotiation on
the QoS of the
uncontrollable
real-time service
is performed.
CSINTERRAT-
SHOULDBEL
DHO: The inter-
RAT
SHOULDBEload handover of
the CS domain is
performed.
PSINTERRAT-
SHOULDBEL
DHO: The inter-
RAT
SHOULDBE
load handover of
the PS domain is
performed.
AMRRATERE
D (AMR service
rate decreasing):
The setting of
the TFC subset
and the
negotiation of
the service rate
can be
performed for
the AMR voice
service.
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CSINTERRAT-
SHOULDNOTLDHO: The
inter-RAT
SHOULDNOT
BE load
handover of the
CS domain is
performed.
PSINTERRAT-
SHOULDNOT
LDHO: The
inter-RAT
SHOULDNOT
BE load
handover of the
PS domain is
performed. The
LDR takes the
actions in the
preset sequence
and judges
whether each
action is
successful. If anaction is
unsuccessful,
the LDR turns to
the next action.
If an action is
successful, a
parameter is set
to NOACT, or
all the preceding
actions are
taken, the
downlink LDR
is finished, and
the system waits
for the next
triggering of the
LDR. Because
each action is
performed by its
algorithm
module, the
LDR algorithm
only selects
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
users and
delivers controlmessages, the
execution result
of each action
can be obtained
after a delay, and
the LDR
algorithm
cannot wait for a
long time, so the
LDR can only
judge whether
the actions
succeed by
whether
candidate users
are found. The
inter-frequency
load handover
has no impact on
the QoS of users
and can balance
the cell load, so
the inter-frequency load
handover
usually serves as
the first action.
The BE service
rate decreasing
is effective only
when the DCCC
algorithm is
enabled.
GUI ValueRange:NoAct
(no action),
InterFreqLDHO
(inter-freq load
handover),
BERateRed(BE
traff rate
reduction),
QoSRenego
(uncontrolled
real-time traff
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
Qos re-
negotiation),CSInterRat-
ShouldBeLDH
O(CS domain
inter-rat should
be load
handover),
PSInterRat-
ShouldBeLDH
O(PS domain
inter-rat should
be load
handover),
AMRRateRed
(AMR traff rate
reduction),
CSInterRat-
ShouldNotLDH
O(CS domain
inter-rat should
not be load
handover),
PSInterRat-
ShouldNotLDHO(PS domain
inter-rat should
not be load
handover),
PSInterU2LLD
HO(U2L PS
Handover)
Unit:None
Actual Value
Range:NoAct,
InterFreqLDHO, BERateRed,
QoSRenego,
CSInterRat-
ShouldBeLDH
O, PSInterRat-
ShouldBeLDH
O,
AMRRateRed,
CSInterRat-
ShouldNotLDH
O, PSInterRat-
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ShouldNotLDH
O,PSInterU2LLD
HO
Default
Value:Inter-
FreqLDHO
(inter-freq load
handover)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
UlLdrFirstActio
n
BSC6910 ADD
UCELLLDR MOD
UCELLLDR
WRFD-150216
WRFD-150217
WRFD-070004
WRFD-020103
WRFD-010506
WRFD-020106
WRFD-020108
WRFD-010616
03
WRFD-021101
WRFD-020701
WRFD-020306
Load Based PS
Redirectionfrom UMTS to
LTE
Load Based PS
Handover from
UMTS to LTE
Load Based
GSM and
UMTS
Handover
Enhancement
Based on Iur-gInter Frequency
Load Balance
RAB Quality of
Service
Renegotiation
over Iu Interface
Load
Reshuffling
Code Resource
ManagementMBMS Load
Control
Dynamic
Channel
Configuration
Control (DCCC)
AMR/WB-
AMR Speech
Rates Control
Inter-RAT
Handover Based
on Load
Meaning:NOA
CT: No loadreshuffling
action is taken.
INTERFREQL
DHO: The inter-
frequency load
handover is
performed.
BERATERED:
Channels are
reconfigured for
the BE service.
QOSRENEGO:
The
renegotiation on
the QoS of the
uncontrollable
real-time service
is performed.
CSINTERRAT-
SHOULDBEL
DHO: The inter-
RAT
SHOULDBEload handover of
the CS domain is
performed.
PSINTERRAT-
SHOULDBEL
DHO: The inter-
RAT
SHOULDBE
load handover of
the PS domain is
performed.
AMRRATERE
D (AMR service
rate decreasing):
The setting of
the TFC subset
and the
negotiation of
the service rate
can be
performed for
the AMR voice
service.
WCDMA RAN
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
CSINTERRAT-
SHOULDNOTLDHO: The
inter-RAT
SHOULDNOT
BE load
handover of the
CS domain is
performed.
PSINTERRAT-
SHOULDNOT
LDHO: The
inter-RAT
SHOULDNOT
BE load
handover of the
PS domain is
performed. The
LDR takes the
actions in the
preset sequence
and judges
whether each
action is
successful. If anaction is
unsuccessful,
the LDR turns to
the next action.
If an action is
successful, a
parameter is set
to NOACT, or
all the preceding
actions are
taken, the
downlink LDR
is finished, and
the system waits
for the next
triggering of the
LDR. Because
each action is
performed by its
algorithm
module, the
LDR algorithm
only selects
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
users and
delivers controlmessages, the
execution result
of each action
can be obtained
after a delay, and
the LDR
algorithm
cannot wait for a
long time, so the
LDR can only
judge whether
the actions
succeed by
whether
candidate users
are found. The
inter-frequency
load handover
has no impact on
the QoS of users
and can balance
the cell load, so
the inter-frequency load
handover
usually serves as
the first action.
The BE service
rate decreasing
is effective only
when the DCCC
algorithm is
enabled.
GUI ValueRange:NoAct
(no action),
InterFreqLDHO
(inter-freq load
handover),
BERateRed(BE
traff rate
reduction),
QoSRenego
(uncontrolled
real-time traff
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
Qos re-
negotiation),CSInterRat-
ShouldBeLDH
O(CS domain
inter-rat should
be load
handover),
PSInterRat-
ShouldBeLDH
O(PS domain
inter-rat should
be load
handover),
AMRRateRed
(AMR traff rate
reduction),
CSInterRat-
ShouldNotLDH
O(CS domain
inter-rat should
not be load
handover),
PSInterRat-
ShouldNotLDHO(PS domain
inter-rat should
not be load
handover),
PSInterU2LLD
HO(U2L PS
Handover)
Unit:None
Actual Value
Range:NoAct,
InterFreqLDHO, BERateRed,
QoSRenego,
CSInterRat-
ShouldBeLDH
O, PSInterRat-
ShouldBeLDH
O,
AMRRateRed,
CSInterRat-
ShouldNotLDH
O, PSInterRat-
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
ShouldNotLDH
O,PSInterU2LLD
HO
Default
Value:Inter-
FreqLDHO
(inter-freq load
handover)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlLdrSecondAc
tion
BSC6900 ADD
UCELLLDR MOD
UCELLLDR
WRFD-150216
WRFD-150217
WRFD-070004
WRFD-020103
WRFD-010506
WRFD-020106
WRFD-020108
WRFD-010616
03
WRFD-021101
WRFD-020701
WRFD-020306
Load Based PS
Redirectionfrom UMTS to
LTE
Load Based PS
Handover from
UMTS to LTE
Load Based
GSM and
UMTS
Handover
Enhancement
Based on Iur-gInter Frequency
Load Balance
RAB Quality of
Service
Renegotiation
over Iu Interface
Load
Reshuffling
Code Resource
ManagementMBMS Load
Control
Dynamic
Channel
Configuration
Control (DCCC)
AMR/WB-
AMR Speech
Rates Control
Inter-RAT
Handover Based
on Load
Meaning:This
parameter hasthe same content
as
DlLdrFirstActio
n. The selected
actions,
however, should
be unique.
GUI Value
Range:NoAct
(no action),
InterFreqLDHO
(inter-freq load
handover),
BERateRed(BE
traff rate
reduction),
QoSRenego
(uncontrolled
real-time traff
Qos re-
negotiation),
CSInterRat-
ShouldBeLDHO(CS domain
inter-rat should
be load
handover),
PSInterRat-
ShouldBeLDH
O(PS domain
inter-rat should
be load
handover),
AMRRateRed(AMR traff rate
reduction),
MBMSDecPow
er(MBMS
descend power),
CodeAdj(Code
adjust),
CSInterRat-
ShouldNotLDH
O(CS domain
inter-rat should
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
not be load
handover),PSInterRat-
ShouldNotLDH
O(PS domain
inter-rat should
not be load
handover),
PSInterU2LLD
HO(U2L PS
Handover),
WAMRSfReco
nfiguration
(AMR-WB SF
reconfiguration)
Unit:None
Actual Value
Range:NoAct,
InterFreqLDHO
, BERateRed,
QoSRenego,
CSInterRat-
ShouldBeLDH
O, PSInterRat-
ShouldBeLDH
O,
AMRRateRed,
MBMSDecPow
er, CodeAdj,
CSInterRat-
ShouldNotLDH
O, PSInterRat-
ShouldNotLDH
O,
PSInterU2LLD
HO,WAMRSfReco
nfiguration
Default
Value:Inter-
FreqLDHO
(inter-freq load
handover)
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
DlLdrSecondAc
tion
BSC6910 ADD
UCELLLDR MOD
UCELLLDR
WRFD-021101
WRFD-020108
WRFD-020103
WRFD-010506
WRFD-020106
WRFD-010616
03
WRFD-020701
Dynamic
ChannelConfiguration
Control (DCCC)
Code Resource
Management
Inter Frequency
Load Balance
RAB Quality of
Service
Renegotiation
over Iu Interface
Load
Reshuffling
MBMS Load
Control
AMR/WB-
AMR Speech
Rates Control
Meaning:This
parameter hasthe same content
as
DlLdrFirstActio
n. The selected
actions,
however, should
be unique.
GUI Value
Range:NoAct
(no action),
InterFreqLDHO
(inter-freq load
handover),
BERateRed(BE
traff rate
reduction),
QoSRenego
(uncontrolled
real-time traff
Qos re-
negotiation),
CSInterRat-
ShouldBeLDHO(CS domain
inter-rat should
be load
handover),
PSInterRat-
ShouldBeLDH
O(PS domain
inter-rat should
be load
handover),
AMRRateRed(AMR traff rate
reduction),
MBMSDecPow
er(MBMS
descend power),
CodeAdj(Code
adjust),
CSInterRat-
ShouldNotLDH
O(CS domain
inter-rat should
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Parameter ID NE MMLCommand
Feature ID Feature Name Description
not be load
handover),PSInterRat-
ShouldNotLDH
O(PS domain
inter-rat should
not be load
handover),
PSInterU2LLD
HO(U2L PS
Handover),
WAMRSfReco
nfiguration
(AMR-WB SF
reconfiguration)
Unit:None
Actual Value
Range:NoAct,
InterFreqLDHO
, BERateRed,
QoSRenego,
CSInterRat-
ShouldBeLDH
O, PSInterRat-
ShouldBeLDH
O,
AMRRateRed,
MBMSDecPow
er, CodeAdj,
CSInterRat-
ShouldNotLDH
O, PSInterRat-
ShouldNotLDH
O,
PSInterU2LLD
HO,WAMRSfReco
nfiguration
Default
Value:Inter-
FreqLDHO
(inter-freq load
handover)
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10 Counters
Table 10-1 Counter description
Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67180677 VS.AMR.UL.R
ateDown
Number of UL
Rate Decreases
for AMR
Services for Cell
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67180678 VS.AMR.DL.R
ateUp
Number of DL
Rate Increases
for AMR
Services for Cell
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67190519 VS.AMR.DL.R
ateDown
Number of DL
Rate Decreases
for AMR
Services for Cell
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67190520 VS.AMR.UL.R
ateUp
Number of UL
Rate Increases
for AMR
Services for Cell
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67192001 VS.AMRWB.DLRateUp
Number of Increases of DL
Rate for AMR
WB Speech
Service
BSC6900 WRFD-020701 AMR/WB-AMR Speech
Rates Control
67192002 VS.AMRWB.D
LRateDown
Number of
Decreases of DL
Rate for AMR
WB Speech
Service
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67192003 VS.AMRWB.U
LRateUp
Number of
Increases of ULRate for AMR
WB Speech
Service
BSC6900 WRFD-020701 AMR/WB-
AMR SpeechRates Control
67192004 VS.AMRWB.U
LRateDown
Number of
Decreases of UL
Rate for AMR
WB Speech
Service
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67192120 VS.RAB.AttEst
abCS.AMRWB
Number of CS
Wideband AMR Service RAB
Establishment
Attempts for
Cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
67192121 VS.RAB.SuccE
stabCS.AMRW
B
Number of
Successful CS
Wideband AMR
RAB
Establishments
for Cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
67192201 VS.RAB.Abnor
mRel.AMRWB.
23.85
Number of CS
23.85kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192202 VS.RAB.Abnor
mRel.AMRWB.
23.05
Number of CS
23.05kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67192203 VS.RAB.Abnor
mRel.AMRWB.19.85
Number of CS
19.85kbit/s WBAMR RABs
Abnormally
Released for
Cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192204 VS.RAB.Abnor
mRel.AMRWB.18.25
Number of CS
18.25kbit/s WBAMR RABs
Abnormally
Released for
Cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192205 VS.RAB.Abnor mRel.AMRWB.
15.85
Number of CS15.85kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6900 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192206 VS.RAB.Abnor
mRel.AMRWB.
14.25
Number of CS
14.25kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67192207 VS.RAB.Abnor
mRel.AMRWB.12.65
Number of CS
12.65kbit/s WBAMR RABs
Abnormally
Released for
Cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192208 VS.RAB.Abnor
mRel.AMRWB.8.85
Number of CS
8.85kbit/s WBAMR RABs
Abnormally
Released for
Cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192209 VS.RAB.Abnor mRel.AMRWB.
6.6
Number of CS6.6kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6900 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203803 VS.RB.AMRW
B.DL.23.85
Number of UEs
that use the CS
AMR WB
speech service at
the DL bit rate of
23.85 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203804 VS.RB.AMRW
B.DL.23.05
Number of UEs
that use the CSAMR WB
speech service at
the DL bit rate of
23.05 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203805 VS.RB.AMRW
B.DL.19.85
Number of UEs
that use the CSAMR WB
speech service at
the DL bit rate of
19.85 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203806 VS.RB.AMRWB.DL.18.25
Number of UEsthat use the CS
AMR WB
speech service at
the DL bit rate of
18.25 kbit/s in
the cell
BSC6900 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203807 VS.RB.AMRW
B.DL.15.85
Number of UEs
that use the CS
AMR WB
speech service at
the DL bit rate of
15.85 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203808 VS.RB.AMRW
B.DL.14.25
Number of UEs
that use the CSAMR WB
speech service at
the DL bit rate of
14.25 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203809 VS.RB.AMRW
B.DL.12.65
Number of UEs
that use the CSAMR WB
speech service at
the DL bit rate of
12.65 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203810 VS.RB.AMRWB.DL.8.85
Number of UEsthat use the CS
AMR WB
speech service at
the DL bit rate of
8.85 kbit/s in the
cell
BSC6900 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203811 VS.RB.AMRW
B.DL.6.60
Number of UEs
that use the CS
AMR WB
speech service at
the DL bit rate of
6.60 kbit/s in the
cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Copyright © Huawei Technologies Co., Ltd.
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203812 VS.RB.AMRW
B.UL.23.85
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
23.85 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203813 VS.RB.AMRW
B.UL.23.05
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
23.05 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203814 VS.RB.AMRWB.UL.19.85
Number of UEsthat use the CS
AMR WB
speech service at
the UL bit rate of
19.85 kbit/s in
the cell
BSC6900 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203815 VS.RB.AMRW
B.UL.18.25
Number of UEs
that use the CS
AMR WB
speech service at
the UL bit rate of
18.25 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203816 VS.RB.AMRW
B.UL.15.85
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
15.85 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203817 VS.RB.AMRW
B.UL.14.25
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
14.25 kbit/s in
the cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203818 VS.RB.AMRWB.UL.12.65
Number of UEsthat use the CS
AMR WB
speech service at
the UL bit rate of
12.65 kbit/s in
the cell
BSC6900 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203819 VS.RB.AMRW
B.UL.8.85
Number of UEs
that use the CS
AMR WB
speech service at
the UL bit rate of
8.85 kbit/s in the
cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203820 VS.RB.AMRW
B.UL.6.60
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
6.60 kbit/s in the
cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73394277 VS.RAB.AttEst
abCS.AMRWB23.85
Number of CS
23.85kbit/sAMRWB
service RAB
establishment
Attempts for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73394278 VS.RAB.AttEst
abCS.AMRWB
23.05
Number of CS
23.05kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394279 VS.RAB.AttEst
abCS.AMRWB
19.85
Number of CS
19.85kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394280 VS.RAB.AttEst
abCS.AMRWB
18.25
Number of CS
18.25kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394281 VS.RAB.AttEst
abCS.AMRWB
15.85
Number of CS
15.85kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73394282 VS.RAB.AttEst
abCS.AMRWB14.25
Number of CS
14.25kbit/sAMRWB
service RAB
establishment
Attempts for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73394283 VS.RAB.AttEst
abCS.AMRWB
12.65
Number of CS
12.65kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394284 VS.RAB.AttEst
abCS.AMRWB
8.85
Number of CS
8.85kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394285 VS.RAB.AttEst
abCS.AMRWB
6.60
Number of CS
6.60kbit/s
AMRWB
service RAB
establishmentAttempts for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394286 VS.RAB.SuccE
stabCS.AMRW
B23.85
Number of CS
23.85kbit/s
AMRWB
service RAB
successfully
established for
cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394287 VS.RAB.SuccE
stabCS.AMRWB23.05
Number of CS
23.05kbit/sAMRWB
service RAB
successfully
established for
cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73394288 VS.RAB.SuccE
stabCS.AMRWB19.85
Number of CS
19.85kbit/sAMRWB
service RAB
successfully
established for
cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73394289 VS.RAB.SuccE
stabCS.AMRW
B18.25
Number of CS
18.25kbit/s
AMRWB
service RAB
successfully
established for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394290 VS.RAB.SuccE
stabCS.AMRW
B15.85
Number of CS
15.85kbit/s
AMRWB
service RAB
successfully
established for
cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394291 VS.RAB.SuccE
stabCS.AMRWB14.25
Number of CS
14.25kbit/sAMRWB
service RAB
successfully
established for
cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73394292 VS.RAB.SuccE
stabCS.AMRW
B12.65
Number of CS
12.65kbit/s
AMRWB
service RAB
successfully
established for cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394293 VS.RAB.SuccE
stabCS.AMRW
B8.85
Number of CS
8.85kbit/s
AMRWB
service RAB
successfully
established for
cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73394294 VS.RAB.SuccE
stabCS.AMRWB6.60
Number of CS
6.60kbit/sAMRWB
service RAB
successfully
established for
cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73403815 VS.RAB.Abnor
mRel.AMRWB.
Iur
Number of CS
AMRWB RABs
Abnormally
Released on the
SRNC Iur
Interface for SRNC
BSC6900 WRFD-010613
WRFD-010501
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Conversational
QoS Class
73403816 VS.RAB.Norm
Rel.AMRWB.Iu
r
Number of CS
AMRWB RABs
Normally
Released on the
SRNC Iur
Interface for
SRNC
BSC6900 WRFD-010613
WRFD-010501
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Conversational
QoS Class
73403833 VS.RAB.Norm
Rel.AMRWB.23.85
Number of CS
23.85kbpsAMRWB RABs
Normally
Released for cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403834 VS.RAB.Norm
Rel.AMRWB.
23.05
Number of CS
23.05kbps
AMRWB RABs
Normally
Released for cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73403835 VS.RAB.Norm
Rel.AMRWB.19.85
Number of CS
19.85kbpsAMRWB RABs
Normally
Released for cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403836 VS.RAB.Norm
Rel.AMRWB.18.25
Number of CS
18.25kbpsAMRWB RABs
Normally
Released for cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403837 VS.RAB.NormRel.AMRWB.
15.85
Number of CS15.85kbps
AMRWB RABs
Normally
Released for cell
BSC6900 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403838 VS.RAB.Norm
Rel.AMRWB.
14.25
Number of CS
14.25kbps
AMRWB RABs
Normally
Released for cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73403839 VS.RAB.Norm
Rel.AMRWB.12.65
Number of CS
12.65kbpsAMRWB RABs
Normally
Released for cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403840 VS.RAB.Norm
Rel.AMRWB.8.85
Number of CS
8.85kbpsAMRWB RABs
Normally
Released for cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403841 VS.RAB.NormRel.AMRWB.
6.60
Number of CS6.60kbps
AMRWB RABs
Normally
Released for cell
BSC6900 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403842 VS.RAB.Abnor
mRel.AMRWB
Number of CS
AMRWB RABs
Abnormally
Released for cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73403843 VS.RAB.Norm
Rel.AMRWB
Number of CS
AMRWB RABs Normally
Released for cell
BSC6900 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73427211 VS.AttCall.UE
Capab.AMRWB
Number of Calls
Initiated andReceived by
UEs Supporting
AMR-WB for
Cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73427917 VS.LCC.LDR.
AMRSfRecfg
Number of UEs
Involved in
AMR-WB SF
Reconfiguration
When a Cell Is in
the Basic
Congestion
State
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73428273 VS.RAB.Rel.A
MRWB.UL.Lo
wQuality
Number of
Normally
Released AMR-
WB RABs (Poor
Uplink Voice
Quality)
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428274 VS.RAB.Rel.AMRWB.DL.Lo
wQuality
Number of Normally
Released AMR-
WB RABs (Poor
Downlink Voice
Quality)
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
ConversationalQoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428375 VS.OrigCSCall.
AttEstab.Idle
Number of CS
Service SetupAttempts
Initiated by UEs
in Idle Mode for
Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428376 VS.OrigCSCall.
AttEstab.CSFB.
Redir
Number of CS
Service Setup
Attempts
Initiated by
Redirection-
based CSFB
UEs for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate WideBand)
KQI Voice
73428377 VS.OrigCSCall.
AttEstab.DCH
Number of CS
Service Setup
Attempts
Initiated by UEs
in CELL_DCH
State for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428378 VS.OrigCSCall.
AttEstab.FACH
Number of CS
Service Setup
Attempts
Initiated by UEs
in CELL_FACH
State for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428379 VS.OrigCSCall.
AttEstab.PCH
Number of CS
Service Setup
AttemptsInitiated by UEs
in CELL_PCH/
URA_PCH
State for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428380 VS.OrigCSCall.
AttEstab.CSFB.PSHO
Number of CS
Service SetupAttempts
Initiated by
Handover-based
CSFB UEs for
Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428381 VS.OrigCSCall.
SuccEstab.Idle
Number of
Successful CS
Service Setups
Initiated by UEs
in Idle Mode for
Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate WideBand)
KQI Voice
73428382 VS.OrigCSCall.
SuccEstab.CSF
B.Redir
Number of
Successful CS
Service Setups
Initiated by
Redirection-
based CSFB
UEs for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428383 VS.OrigCSCall.
SuccEstab.DCH
Number of
Successful CS
Service Setups
Initiated by UEs
in the
CELL_DCH
State for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428384 VS.OrigCSCall.
SuccEstab.FAC
H
Number of
Successful CS
Service SetupsInitiated by UEs
in the
CELL_FACH
State for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428385 VS.OrigCSCall.
SuccEstab.PCH
Number of
Successful CSService Setups
Initiated by UEs
in the
CELL_PCH/
URA_PCH
State for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428386 VS.OrigCSCall.
SuccEstab.CSF
B.PSHO
Number of
Successful CS
Service Setups
Initiated by
Handover-basedCSFB UEs for
Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate WideBand)
KQI Voice
73428428 VS.OrigCall.Est
abDelay.Good.
Num.AMRWB
Number of
Times that the
Access Delay of
AMR-WB Calls
Is GOOD for
Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428429 VS.OrigCall.Est
abDelay.Mediu
m.Num.AMRW
B
Number of
Times that the
Access Delay of
AMR-WB Calls
Is MEDIUM for
Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428430 VS.OrigCall.Est
abDelay.Bad.N
um.AMRWB
Number of
Times that the
Access Delay of AMR-WB Calls
Is BAD for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428432 VS.RAB.Rel.A
MRWB.CNAbnormal
Number of
AMR-WBRABs
Abnormally
Released by the
CN for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428886 VS.AMRNB.D
L.RateUp.Tcp
Number of
Times That
Downlink Rate
Increase Is
Triggered for
NB-AMR
Services for Cell
(Triggered by
Downlink
Transmit
Power)
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428887 VS.AMRNB.D
L.RateDown.Tc
p
Number of
Times That
Downlink Rate
Reduction Is
Triggered for NB-AMR
Services for Cell
(Triggered by
Downlink
Transmit
Power)
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428888 VS.AMRWB.D
L.RateUp.Tcp
Number of
Times That
Downlink Rate
Increase Is
Triggered for WB-AMR
Services for Cell
(Triggered by
Downlink
Transmit
Power)
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428889 VS.AMRWB.D
L.RateDown.Tc p
Number of
Times ThatDownlink Rate
Reduction Is
Triggered for
WB-AMR
Services for Cell
(Triggered by
Downlink
Transmit
Power)
BSC6900 WRFD-020701 AMR/WB-
AMR SpeechRates Control
73428890 VS.AMRNB.U
L.RateUp.UeTxPwr
Number of
Times ThatUplink Rate
Increase Is
Triggered for
NB-AMR
Services for Cell
(Triggered by
UE Transmit
Power)
BSC6900 WRFD-020701 AMR/WB-
AMR SpeechRates Control
73428891 VS.AMRNB.U
L.RateDown.Ue
TxPwr
Number of
Times That
Uplink RateReduction Is
Triggered for
NB-AMR
Services for Cell
(Triggered by
UE Transmit
Power)
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428892 VS.AMRWB.U
L.RateUp.UeTx
Pwr
Number of
Times That
Uplink Rate
Increase Is
Triggered for
WB-AMR
Services for Cell
(Triggered by
UE Transmit
Power)
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428893 VS.AMRWB.U
L.RateDown.UeTxPwr
Number of
Times ThatUplink Rate
Reduction Is
Triggered for
WB-AMR
Services for Cell
(Triggered by
UE Transmit
Power)
BSC6900 WRFD-020701 AMR/WB-
AMR SpeechRates Control
73428894 VS.AMRNB.U
L.RateUp.TRF
O
Number of
Times That
Uplink RateIncrease Is
Triggered for
NB-AMR
Services for Cell
(Based on
TrFO)
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428895 VS.AMRNB.U
L.RateDown.T
RFO
Number of
Times That
Uplink Rate
Reduction Is
Triggered for NB-AMR
Services for Cell
(Based on
TrFO)
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428896 VS.AMRWB.U
L.RateUp.TRF
O
Number of
Times That
Uplink Rate
Increase Is
Triggered for
WB-AMR
Services for Cell
(Based on
TrFO)
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428897 VS.AMRWB.U
L.RateDown.TRFO
Number of
Times ThatUplink Rate
Reduction Is
Triggered for
WB-AMR
Services for Cell
(Based on
TrFO)
BSC6900 WRFD-020701 AMR/WB-
AMR SpeechRates Control
73428898 VS.LCC.LDR.
AMRWBRateU
L
Number of
Times That Rate
Reduction Is
Performed for WB-AMR
Services due to
Uplink Basic
Congestion for
Cell
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428899 VS.LCC.LDR.
AMRWBRateD
L
Number of
Times That Rate
Reduction Is
Performed for
WB-AMR
Services due toDownlink Basic
Congestion for
Cell
BSC6900 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428905 VS.ULBler.AM
RWB.ErrTB
Number of TBs
with UL CRCI
Error for AMR-
WB Services for
Cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73428906 VS.ULBler.AM
RWB.Sample
Number of
BLER Samplings for
AMR-WB
Services for Cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73444346 VS.OrigCall.Est
abMeanTime.AMRWB.PCH
Average Access
Delay of theAMR-WB Calls
Initiated by UEs
in the
CELL_PCH/
URA_PCH
State for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73444347 VS.OrigCall.Est
abMeanTime.A
MRWB.CSFB.
Redir
Average Access
Delay of the
AMR-WB Calls
Initiated by UEs
in Redirection- based CSFB for
Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate WideBand)
KQI Voice
73444348 VS.OrigCall.Est
abMeanTime.A
MRWB.CSFB.
PSHO
Average Access
Delay of the
AMR-WB Calls
Initiated by UEs
in Handover-
based CSFB for
Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73444349 VS.OrigCall.Est
abMeanTime.A
MRWB
Average Access
Delay of the
AMR-WB Calls
Initiated by UEs
for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73444353 VS.OrigCall.Est
abMeanTime.A
MRWB.DCH
Average Access
Delay of the
AMR-WB CallsInitiated by UEs
in the
CELL_DCH
State for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73444354 VS.OrigCall.Est
abMeanTime.AMRWB.FACH
Average Access
Delay of theAMR-WB Calls
Initiated by UEs
in the
CELL_FACH
State for Cell
BSC6900 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73444479 VS.RAB.AMR
WB.Erlang.cell
Number of
Erlangs for
AMRWB
Services for Cell
BSC6900 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73444480 VS.ULBler.AMRWB
UL BLER of AMR-WB
Services for Cell
BSC6900 WRFD-010613 AMR-WB(Adaptive Multi
Rate Wide
Band)
67180677 VS.AMR.UL.R
ateDown
Number of UL
Rate Decreases
for AMR
Services for Cell
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67180678 VS.AMR.DL.R
ateUp
Number of DL
Rate Increases
for AMR Services for Cell
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67190519 VS.AMR.DL.R
ateDown
Number of DL
Rate Decreases
for AMR
Services for Cell
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67190520 VS.AMR.UL.R
ateUp
Number of UL
Rate Increases
for AMR
Services for Cell
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67192001 VS.AMRWB.D
LRateUp
Number of
Increases of DL
Rate for AMR
WB Speech
Service
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67192002 VS.AMRWB.D
LRateDown
Number of
Decreases of DL
Rate for AMR
WB Speech
Service
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67192003 VS.AMRWB.U
LRateUp
Number of
Increases of ULRate for AMR
WB Speech
Service
BSC6910 WRFD-020701 AMR/WB-
AMR SpeechRates Control
67192004 VS.AMRWB.U
LRateDown
Number of
Decreases of UL
Rate for AMR
WB Speech
Service
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
67192120 VS.RAB.AttEst
abCS.AMRWB
Number of CS
Wideband AMR Service RAB
Establishment
Attempts for
Cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
67192121 VS.RAB.SuccE
stabCS.AMRW
B
Number of
Successful CS
Wideband AMR
RAB
Establishments
for Cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
67192201 VS.RAB.Abnor
mRel.AMRWB.
23.85
Number of CS
23.85kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192202 VS.RAB.Abnor
mRel.AMRWB.
23.05
Number of CS
23.05kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67192203 VS.RAB.Abnor
mRel.AMRWB.19.85
Number of CS
19.85kbit/s WBAMR RABs
Abnormally
Released for
Cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192204 VS.RAB.Abnor
mRel.AMRWB.18.25
Number of CS
18.25kbit/s WBAMR RABs
Abnormally
Released for
Cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192205 VS.RAB.Abnor mRel.AMRWB.
15.85
Number of CS15.85kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6910 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192206 VS.RAB.Abnor
mRel.AMRWB.
14.25
Number of CS
14.25kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67192207 VS.RAB.Abnor
mRel.AMRWB.12.65
Number of CS
12.65kbit/s WBAMR RABs
Abnormally
Released for
Cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192208 VS.RAB.Abnor
mRel.AMRWB.8.85
Number of CS
8.85kbit/s WBAMR RABs
Abnormally
Released for
Cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67192209 VS.RAB.Abnor mRel.AMRWB.
6.6
Number of CS6.6kbit/s WB
AMR RABs
Abnormally
Released for
Cell
BSC6910 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203803 VS.RB.AMRW
B.DL.23.85
Number of UEs
that use the CS
AMR WB
speech service at
the DL bit rate of
23.85 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203804 VS.RB.AMRW
B.DL.23.05
Number of UEs
that use the CSAMR WB
speech service at
the DL bit rate of
23.05 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203805 VS.RB.AMRW
B.DL.19.85
Number of UEs
that use the CSAMR WB
speech service at
the DL bit rate of
19.85 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203806 VS.RB.AMRWB.DL.18.25
Number of UEsthat use the CS
AMR WB
speech service at
the DL bit rate of
18.25 kbit/s in
the cell
BSC6910 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203807 VS.RB.AMRW
B.DL.15.85
Number of UEs
that use the CS
AMR WB
speech service at
the DL bit rate of
15.85 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203808 VS.RB.AMRW
B.DL.14.25
Number of UEs
that use the CSAMR WB
speech service at
the DL bit rate of
14.25 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203809 VS.RB.AMRW
B.DL.12.65
Number of UEs
that use the CSAMR WB
speech service at
the DL bit rate of
12.65 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203810 VS.RB.AMRWB.DL.8.85
Number of UEsthat use the CS
AMR WB
speech service at
the DL bit rate of
8.85 kbit/s in the
cell
BSC6910 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203811 VS.RB.AMRW
B.DL.6.60
Number of UEs
that use the CS
AMR WB
speech service at
the DL bit rate of
6.60 kbit/s in the
cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203812 VS.RB.AMRW
B.UL.23.85
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
23.85 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203813 VS.RB.AMRW
B.UL.23.05
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
23.05 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203814 VS.RB.AMRWB.UL.19.85
Number of UEsthat use the CS
AMR WB
speech service at
the UL bit rate of
19.85 kbit/s in
the cell
BSC6910 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203815 VS.RB.AMRW
B.UL.18.25
Number of UEs
that use the CS
AMR WB
speech service at
the UL bit rate of
18.25 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203816 VS.RB.AMRW
B.UL.15.85
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
15.85 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203817 VS.RB.AMRW
B.UL.14.25
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
14.25 kbit/s in
the cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203818 VS.RB.AMRWB.UL.12.65
Number of UEsthat use the CS
AMR WB
speech service at
the UL bit rate of
12.65 kbit/s in
the cell
BSC6910 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
67203819 VS.RB.AMRW
B.UL.8.85
Number of UEs
that use the CS
AMR WB
speech service at
the UL bit rate of
8.85 kbit/s in the
cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
67203820 VS.RB.AMRW
B.UL.6.60
Number of UEs
that use the CSAMR WB
speech service at
the UL bit rate of
6.60 kbit/s in the
cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73394277 VS.RAB.AttEst
abCS.AMRWB23.85
Number of CS
23.85kbit/sAMRWB
service RAB
establishment
Attempts for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73394278 VS.RAB.AttEst
abCS.AMRWB
23.05
Number of CS
23.05kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394279 VS.RAB.AttEst
abCS.AMRWB
19.85
Number of CS
19.85kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394280 VS.RAB.AttEst
abCS.AMRWB
18.25
Number of CS
18.25kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394281 VS.RAB.AttEst
abCS.AMRWB
15.85
Number of CS
15.85kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73394282 VS.RAB.AttEst
abCS.AMRWB14.25
Number of CS
14.25kbit/sAMRWB
service RAB
establishment
Attempts for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73394283 VS.RAB.AttEst
abCS.AMRWB
12.65
Number of CS
12.65kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394284 VS.RAB.AttEst
abCS.AMRWB
8.85
Number of CS
8.85kbit/s
AMRWB
service RAB
establishment
Attempts for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394285 VS.RAB.AttEst
abCS.AMRWB
6.60
Number of CS
6.60kbit/s
AMRWB
service RAB
establishmentAttempts for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394286 VS.RAB.SuccE
stabCS.AMRW
B23.85
Number of CS
23.85kbit/s
AMRWB
service RAB
successfully
established for
cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394287 VS.RAB.SuccE
stabCS.AMRWB23.05
Number of CS
23.05kbit/sAMRWB
service RAB
successfully
established for
cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73394288 VS.RAB.SuccE
stabCS.AMRWB19.85
Number of CS
19.85kbit/sAMRWB
service RAB
successfully
established for
cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73394289 VS.RAB.SuccE
stabCS.AMRW
B18.25
Number of CS
18.25kbit/s
AMRWB
service RAB
successfully
established for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394290 VS.RAB.SuccE
stabCS.AMRW
B15.85
Number of CS
15.85kbit/s
AMRWB
service RAB
successfully
established for
cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394291 VS.RAB.SuccE
stabCS.AMRWB14.25
Number of CS
14.25kbit/sAMRWB
service RAB
successfully
established for
cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73394292 VS.RAB.SuccE
stabCS.AMRW
B12.65
Number of CS
12.65kbit/s
AMRWB
service RAB
successfully
established for cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73394293 VS.RAB.SuccE
stabCS.AMRW
B8.85
Number of CS
8.85kbit/s
AMRWB
service RAB
successfully
established for
cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73394294 VS.RAB.SuccE
stabCS.AMRWB6.60
Number of CS
6.60kbit/sAMRWB
service RAB
successfully
established for
cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73403815 VS.RAB.Abnor
mRel.AMRWB.
Iur
Number of CS
AMRWB RABs
Abnormally
Released on the
SRNC Iur
Interface for SRNC
BSC6910 WRFD-010613
WRFD-010501
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Conversational
QoS Class
73403816 VS.RAB.Norm
Rel.AMRWB.Iu
r
Number of CS
AMRWB RABs
Normally
Released on the
SRNC Iur
Interface for
SRNC
BSC6910 WRFD-010613
WRFD-010501
AMR-WB
(Adaptive Multi
Rate Wide
Band)
Conversational
QoS Class
73403833 VS.RAB.Norm
Rel.AMRWB.23.85
Number of CS
23.85kbpsAMRWB RABs
Normally
Released for cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403834 VS.RAB.Norm
Rel.AMRWB.
23.05
Number of CS
23.05kbps
AMRWB RABs
Normally
Released for cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73403835 VS.RAB.Norm
Rel.AMRWB.19.85
Number of CS
19.85kbpsAMRWB RABs
Normally
Released for cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403836 VS.RAB.Norm
Rel.AMRWB.18.25
Number of CS
18.25kbpsAMRWB RABs
Normally
Released for cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403837 VS.RAB.NormRel.AMRWB.
15.85
Number of CS15.85kbps
AMRWB RABs
Normally
Released for cell
BSC6910 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403838 VS.RAB.Norm
Rel.AMRWB.
14.25
Number of CS
14.25kbps
AMRWB RABs
Normally
Released for cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73403839 VS.RAB.Norm
Rel.AMRWB.12.65
Number of CS
12.65kbpsAMRWB RABs
Normally
Released for cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403840 VS.RAB.Norm
Rel.AMRWB.8.85
Number of CS
8.85kbpsAMRWB RABs
Normally
Released for cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403841 VS.RAB.NormRel.AMRWB.
6.60
Number of CS6.60kbps
AMRWB RABs
Normally
Released for cell
BSC6910 WRFD-010613WRFD-010510
AMR-WB(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73403842 VS.RAB.Abnor
mRel.AMRWB
Number of CS
AMRWB RABs
Abnormally
Released for cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive Multi
Rate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73403843 VS.RAB.Norm
Rel.AMRWB
Number of CS
AMRWB RABs Normally
Released for cell
BSC6910 WRFD-010613
WRFD-010510
AMR-WB
(Adaptive MultiRate Wide
Band)
3.4/6.8/13.6/27.
2Kbps RRC
Connection and
Radio Access
Bearer
Establishment
and Release
73427211 VS.AttCall.UE
Capab.AMRWB
Number of Calls
Initiated andReceived by
UEs Supporting
AMR-WB for
Cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
73427917 VS.LCC.LDR.
AMRSfRecfg
Number of UEs
Involved in
AMR-WB SF
Reconfiguration
When a Cell Is in
the Basic
Congestion
State
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73428273 VS.RAB.Rel.A
MRWB.UL.Lo
wQuality
Number of
Normally
Released AMR-
WB RABs (Poor
Uplink Voice
Quality)
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428274 VS.RAB.Rel.AMRWB.DL.Lo
wQuality
Number of Normally
Released AMR-
WB RABs (Poor
Downlink Voice
Quality)
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
ConversationalQoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428375 VS.OrigCSCall.
AttEstab.Idle
Number of CS
Service SetupAttempts
Initiated by UEs
in Idle Mode for
Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428376 VS.OrigCSCall.
AttEstab.CSFB.
Redir
Number of CS
Service Setup
Attempts
Initiated by
Redirection-
based CSFB
UEs for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate WideBand)
KQI Voice
73428377 VS.OrigCSCall.
AttEstab.DCH
Number of CS
Service Setup
Attempts
Initiated by UEs
in CELL_DCH
State for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428378 VS.OrigCSCall.
AttEstab.FACH
Number of CS
Service Setup
Attempts
Initiated by UEs
in CELL_FACH
State for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428379 VS.OrigCSCall.
AttEstab.PCH
Number of CS
Service Setup
AttemptsInitiated by UEs
in CELL_PCH/
URA_PCH
State for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428380 VS.OrigCSCall.
AttEstab.CSFB.PSHO
Number of CS
Service SetupAttempts
Initiated by
Handover-based
CSFB UEs for
Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428381 VS.OrigCSCall.
SuccEstab.Idle
Number of
Successful CS
Service Setups
Initiated by UEs
in Idle Mode for
Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate WideBand)
KQI Voice
73428382 VS.OrigCSCall.
SuccEstab.CSF
B.Redir
Number of
Successful CS
Service Setups
Initiated by
Redirection-
based CSFB
UEs for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428383 VS.OrigCSCall.
SuccEstab.DCH
Number of
Successful CS
Service Setups
Initiated by UEs
in the
CELL_DCH
State for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428384 VS.OrigCSCall.
SuccEstab.FAC
H
Number of
Successful CS
Service SetupsInitiated by UEs
in the
CELL_FACH
State for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428385 VS.OrigCSCall.
SuccEstab.PCH
Number of
Successful CSService Setups
Initiated by UEs
in the
CELL_PCH/
URA_PCH
State for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428386 VS.OrigCSCall.
SuccEstab.CSF
B.PSHO
Number of
Successful CS
Service Setups
Initiated by
Handover-basedCSFB UEs for
Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate WideBand)
KQI Voice
73428428 VS.OrigCall.Est
abDelay.Good.
Num.AMRWB
Number of
Times that the
Access Delay of
AMR-WB Calls
Is GOOD for
Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428429 VS.OrigCall.Est
abDelay.Mediu
m.Num.AMRW
B
Number of
Times that the
Access Delay of
AMR-WB Calls
Is MEDIUM for
Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428430 VS.OrigCall.Est
abDelay.Bad.N
um.AMRWB
Number of
Times that the
Access Delay of AMR-WB Calls
Is BAD for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428432 VS.RAB.Rel.A
MRWB.CNAbnormal
Number of
AMR-WBRABs
Abnormally
Released by the
CN for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73428886 VS.AMRNB.D
L.RateUp.Tcp
Number of
Times That
Downlink Rate
Increase Is
Triggered for
NB-AMR
Services for Cell
(Triggered by
Downlink
Transmit
Power)
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428887 VS.AMRNB.D
L.RateDown.Tc
p
Number of
Times That
Downlink Rate
Reduction Is
Triggered for NB-AMR
Services for Cell
(Triggered by
Downlink
Transmit
Power)
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428888 VS.AMRWB.D
L.RateUp.Tcp
Number of
Times That
Downlink Rate
Increase Is
Triggered for WB-AMR
Services for Cell
(Triggered by
Downlink
Transmit
Power)
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428889 VS.AMRWB.D
L.RateDown.Tc p
Number of
Times ThatDownlink Rate
Reduction Is
Triggered for
WB-AMR
Services for Cell
(Triggered by
Downlink
Transmit
Power)
BSC6910 WRFD-020701 AMR/WB-
AMR SpeechRates Control
73428890 VS.AMRNB.U
L.RateUp.UeTxPwr
Number of
Times ThatUplink Rate
Increase Is
Triggered for
NB-AMR
Services for Cell
(Triggered by
UE Transmit
Power)
BSC6910 WRFD-020701 AMR/WB-
AMR SpeechRates Control
73428891 VS.AMRNB.U
L.RateDown.Ue
TxPwr
Number of
Times That
Uplink RateReduction Is
Triggered for
NB-AMR
Services for Cell
(Triggered by
UE Transmit
Power)
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428892 VS.AMRWB.U
L.RateUp.UeTx
Pwr
Number of
Times That
Uplink Rate
Increase Is
Triggered for
WB-AMR
Services for Cell
(Triggered by
UE Transmit
Power)
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428893 VS.AMRWB.U
L.RateDown.UeTxPwr
Number of
Times ThatUplink Rate
Reduction Is
Triggered for
WB-AMR
Services for Cell
(Triggered by
UE Transmit
Power)
BSC6910 WRFD-020701 AMR/WB-
AMR SpeechRates Control
73428894 VS.AMRNB.U
L.RateUp.TRF
O
Number of
Times That
Uplink RateIncrease Is
Triggered for
NB-AMR
Services for Cell
(Based on
TrFO)
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428895 VS.AMRNB.U
L.RateDown.T
RFO
Number of
Times That
Uplink Rate
Reduction Is
Triggered for NB-AMR
Services for Cell
(Based on
TrFO)
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428896 VS.AMRWB.U
L.RateUp.TRF
O
Number of
Times That
Uplink Rate
Increase Is
Triggered for
WB-AMR
Services for Cell
(Based on
TrFO)
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73428897 VS.AMRWB.U
L.RateDown.TRFO
Number of
Times ThatUplink Rate
Reduction Is
Triggered for
WB-AMR
Services for Cell
(Based on
TrFO)
BSC6910 WRFD-020701 AMR/WB-
AMR SpeechRates Control
73428898 VS.LCC.LDR.
AMRWBRateU
L
Number of
Times That Rate
Reduction Is
Performed for WB-AMR
Services due to
Uplink Basic
Congestion for
Cell
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428899 VS.LCC.LDR.
AMRWBRateD
L
Number of
Times That Rate
Reduction Is
Performed for
WB-AMR
Services due toDownlink Basic
Congestion for
Cell
BSC6910 WRFD-020701 AMR/WB-
AMR Speech
Rates Control
73428905 VS.ULBler.AM
RWB.ErrTB
Number of TBs
with UL CRCI
Error for AMR-
WB Services for
Cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73428906 VS.ULBler.AM
RWB.Sample
Number of
BLER Samplings for
AMR-WB
Services for Cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive MultiRate Wide
Band)
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73444346 VS.OrigCall.Est
abMeanTime.AMRWB.PCH
Average Access
Delay of theAMR-WB Calls
Initiated by UEs
in the
CELL_PCH/
URA_PCH
State for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73444347 VS.OrigCall.Est
abMeanTime.A
MRWB.CSFB.
Redir
Average Access
Delay of the
AMR-WB Calls
Initiated by UEs
in Redirection- based CSFB for
Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate WideBand)
KQI Voice
73444348 VS.OrigCall.Est
abMeanTime.A
MRWB.CSFB.
PSHO
Average Access
Delay of the
AMR-WB Calls
Initiated by UEs
in Handover-
based CSFB for
Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73444349 VS.OrigCall.Est
abMeanTime.A
MRWB
Average Access
Delay of the
AMR-WB Calls
Initiated by UEs
for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73444353 VS.OrigCall.Est
abMeanTime.A
MRWB.DCH
Average Access
Delay of the
AMR-WB CallsInitiated by UEs
in the
CELL_DCH
State for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS Class
AMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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Counter ID Counter Name CounterDescription
NE Feature ID Feature Name
73444354 VS.OrigCall.Est
abMeanTime.AMRWB.FACH
Average Access
Delay of theAMR-WB Calls
Initiated by UEs
in the
CELL_FACH
State for Cell
BSC6910 WRFD-010501
WRFD-010613
WRFD-160104
Conversational
QoS ClassAMR-WB
(Adaptive Multi
Rate Wide
Band)
KQI Voice
73444479 VS.RAB.AMR
WB.Erlang.cell
Number of
Erlangs for
AMRWB
Services for Cell
BSC6910 WRFD-010613 AMR-WB
(Adaptive Multi
Rate Wide
Band)
73444480 VS.ULBler.AMRWB
UL BLER of AMR-WB
Services for Cell
BSC6910 WRFD-010613 AMR-WB(Adaptive Multi
Rate Wide
Band)
WCDMA RAN
AMR Feature Parameter Description 10 Counters
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11 Glossary
For the acronyms, abbreviations, terms, and definitions, see the Glossary.
WCDMA RAN
AMR Feature Parameter Description 11 Glossary
Recommended