46
Feature Description HUAWEI UMTS Radio Access Network Table of Contents Huawei Technologies Proprietary i Table of Contents Chapter 2 UE Idle Mode Behavior ................................................................................................ 2-1 2.1 Introduction ........................................................................................................................ 2-1 2.2 Glossary ............................................................................................................................. 2-2 2.2.1 Terms ...................................................................................................................... 2-2 2.2.2 Acronyms and Abbreviations .................................................................................. 2-3 2.3 Application ......................................................................................................................... 2-4 2.3.1 Availability ............................................................................................................... 2-4 2.3.2 Benefit ..................................................................................................................... 2-4 2.3.3 Limitation and Restriction ........................................................................................ 2-4 2.4 Technical Description ........................................................................................................ 2-5 2.4.1 PLMN Selection [2] ................................................................................................... 2-5 2.4.2 Cell Selection [4] ........................................................................................................ 2-8 2.4.3 Cell Reselection .................................................................................................... 2-15 2.4.4 Location Update and Routing Area Update [3] ........................................................ 2-17 2.4.5 Paging [4][5] .............................................................................................................. 2-22 2.4.6 System Information [5] ............................................................................................. 2-24 2.5 Interaction ........................................................................................................................ 2-34 2.6 Implementation ................................................................................................................ 2-35 2.6.1 Engineering Guideline ........................................................................................... 2-35 2.6.2 Parameters ............................................................................................................ 2-39 2.6.3 Example ................................................................................................................ 2-45 2.7 Reference Information ..................................................................................................... 2-45

02 RAN Feature Description (Idle State Behavior)

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Page 1: 02 RAN Feature Description (Idle State Behavior)

Feature Description HUAWEI UMTS Radio Access Network Table of Contents

Huawei Technologies Proprietary

i

Table of Contents

Chapter 2 UE Idle Mode Behavior................................................................................................ 2-1 2.1 Introduction ........................................................................................................................ 2-1 2.2 Glossary............................................................................................................................. 2-2

2.2.1 Terms ...................................................................................................................... 2-2 2.2.2 Acronyms and Abbreviations .................................................................................. 2-3

2.3 Application ......................................................................................................................... 2-4 2.3.1 Availability ............................................................................................................... 2-4 2.3.2 Benefit ..................................................................................................................... 2-4 2.3.3 Limitation and Restriction........................................................................................ 2-4

2.4 Technical Description ........................................................................................................ 2-5 2.4.1 PLMN Selection [2] ................................................................................................... 2-5 2.4.2 Cell Selection[4]........................................................................................................ 2-8 2.4.3 Cell Reselection .................................................................................................... 2-15 2.4.4 Location Update and Routing Area Update[3]........................................................ 2-17 2.4.5 Paging[4][5] .............................................................................................................. 2-22 2.4.6 System Information[5]............................................................................................. 2-24

2.5 Interaction ........................................................................................................................ 2-34 2.6 Implementation ................................................................................................................ 2-35

2.6.1 Engineering Guideline........................................................................................... 2-35 2.6.2 Parameters............................................................................................................ 2-39 2.6.3 Example ................................................................................................................ 2-45

2.7 Reference Information ..................................................................................................... 2-45

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Chapter 2 UE Idle Mode Behavior

2.1 Introduction

UE in idle mode behavior consists of following parts: PLMN selection: PLMN selection is to insure that the selected PLMN can provide

normal service. When an MS is switched on, it attempts to make contact with a public land mobile network (PLMN). The particular PLMN to be contacted may be selected either automatically or manually.

Cell selection and reselection: Cell selection and reselection is to find a suitable cell to camp on. If a suitable cell is found, the UE shall select this cell to camp on, and report this event to NAS so that the necessary NAS registration procedures can be performed. When the registration is successful, the UE enters in state Camped normally in order to obtain normal service. If the UE is unable to find any suitable cell of selected PLMN the UE shall enter the Any cell selection state.

Location registration (LR): Location registration (LR) includes location update and routing area update, which is used for non-GPRS and GPRS respectively.

Location update: The location updating procedure is a general procedure which is used for the purposes of normal location updating, periodic location updating and IMSI attach.

Routing area updating: The routing area updating procedure is a general procedure, which is used for purpose of normal routing area updating, combined routing area updating and periodic routing area updating.

Paging: Paging is used to transmit paging information to selected UEs in idle mode, CELL_PCH or URA_PCH state to establish a signaling connection or used to trigger a cell update procedure for UEs in CELL_PCH or URA_PCH state or to trigger UE reading updated system information. UTRAN may also initiate paging for UEs in CELL_PCH and URA_PCH state to release the RRC connection.

Receiving system information: System information is used to notify and control the behavior of UEs in a cell, which are broadcasted from the UTRAN by BCCH channel. System information is defined to different blocks with different characteristics named as MIB, SIB and SB and organized as a tree.

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Camped on a cell: UE is in idle mode and has completed the cell

s completed the cell

.

here the MCC and MNC of the PLMN identity match the MCC and MNC of the IMSI.

sses are indicated as barred.

trongest according ils of the layer 1 cell search are

implementation dependent, the precise definition of 'strongest cell' is also

VPLMN: Visited PLMN. This is a PLMN, different from the home PLMN.

default value. If ever the transfer syntax iagnosis.

2.2 Glossary

2.2.1 Terms

Acceptable Cell: A cell that satisfies certain conditions. A UE can always attempt emergency calls on an acceptable cell.

Available PLMN: A PLMN for which the UE has found at least one cell and read its PLMN identity.

Barred Cell: A cell a UE is not allowed to camp on.

selection/reselection process and has chosen a cell. The UE monitors system information and (in most cases) paging information.

Camped on any cell: UE is in idle mode and haselection/reselection process and has chosen a cell irrespective of PLMN identity.

Cell identity: This information element identifies a cell unambiguously within a PLMN

EPLMN: Equivalent PLMN, A PLMN considered as equivalent to the selected PLMN by the UE for PLMN selection, cell selection, cell reselection and handover according to the information provided by the NAS.

HPLMN: Home PLMN. This is a PLMN w

Reserved Cell: A cell on which camping is not allowed, except for particular UEs, if so indicated in the system information.

Restricted Cell: A cell on which camping is allowed, but access attempts are disallowed for UEs whose access cla

Serving cell: The cell on which the UE is camped.

Strongest cell: The cell on a particular carrier that is considered sto the layer 1 cell search procedure. As the deta

implementation dependent.

Suitable Cell: A cell on which an UE may camp. The criteria for a UTRA cell are defined, so are the criteria for a GSM cell.

MP: Mandatory present. A value for that information is always needed, and no information is provided about a particularallows absence (e.g., due to extension), then absence leads to an error d

MD: Mandatory with default value. A value for that information is always needed, and a particular default value is mentioned (in the 'Semantical information' column). This

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eded) when some conditions are met that can be evaluated

fer syntax allows absence, absence

r absence

for 'OP'.

: or u e conditions are met that must be

transfer syntax allows absence, absence

r absence

for 'OP'.

: the r is present or not does not lead to an

which URA it shall use in case of overlapping URAs.

2.2.2 Acro

EF Elementary File

Service

r Mobile Communications

ns System

LAI Location Area Identity

opens the possibility for the transfer syntax to use absence or a special pattern to encode the default value.

CV: Conditional on value. A value for that information is needed (presence needed) or unacceptable (absence neon the sole basis of the content of the message.

If conditions for presence needed are specified, the transfer syntax must allow for the presence of the information. If the transwhen the conditions for presence are met leads to an error diagnosis. If conditions for absence needed are specified, the transfer syntax must allow to encode the absence. If the information is present and the conditions foare met, an error is diagnosed. When neither conditions for presence or absence are met, the information is treated as optional, as described

CH Conditional on history. A value for that information is needed (presence needed) nacceptable (absence needed) when som

evaluated on the basis of information obtained in the past (e.g., from messages received in the past from the other party).

If conditions for presence needed are specified, the transfer syntax must allow for the presence of the information. If thewhen the conditions for presence are met leads to an error diagnosis. If conditions for absence needed are specified, the transfer syntax must allow to encode the absence. If the information is present and the conditions foare met, an error is diagnosed. When neither conditions for presence or absence are met, the information is treated as optional, as described

OP Optional. The presence or absence is significant and modifies the behaviour of eceiver. However whether the information

error diagnosis.

URA identity: Gives the identity of the UTRAN Registration Area. It can be used to indicate to the UE

nyms and Abbreviations

GPRS General Packet Radio

GSM Global System fo

UMTS Universal Mobile Telecommunicatio

SFI Short EF Identifier

SIB System Information Block

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wer

chip divided by the power density in the band

DRX Discontinuous Reception

r Identity

UE User Equipment

k

ion Block

Network

UTRAN Universal Terrestrial Radio Access Network

2.3 Application

2.3.1 Availability ei UMTS RAN. This feature is available on BSC6800

BSC6800 system.

2.3.2 Ben

ives the basic service provider capability such as access to WCDMA

d Restriction

RSCP Receive Signal Code Po

Ec/No Received energy per

LR Location Registration

IMSI International Mobile Subscribe

MCC Mobile Country Code

MNC Mobile Network Code

MS Mobile Station

PLMN Public Land Mobile Network

VPLMN Visited PLMN

MIB Master Information Bloc

SIB System Informat

SB Scheduling Block

PLMN Public Land Mobile

This is a basic feature for HuawV100R002 and later generic releases of the

efit

The feature gnetwork and voice call etc.

2.3.3 Limitation an

This feature is restricted by UE’s capability and compliance to 3GPP specification.

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2.4.1 PLMN Selection

I. PLMN Selection in HPLMN: at Switch-on or Recovery from Lack of Coverage

ollowing recovery from lack of coverage, the MS selects the registered PLMN or equivalent PLMN (if it is available) using all access technologies

If successful registration is achieved, the MS indicates the selected PLMN.

ge due to

S selects and attempts registration on other PLMNs, if available and allowable,

d PLMN Selector with Access Technology"

3) Each PLMN in the "Operator Controlled PLMN Selector with Access Technology"

ss technology combinations with received high quality signal in

e

which PLMN to select.

rt its search using the access technologies stored in the "HPLMN rder. ns in order of

2.4 Technical Description

[2]

At switch on, or f

that the MS is capable of and if necessary attempts to perform a Location Registration.

If there is no registered PLMN, or if registration is not possible due to the PLMN being unavailable or registration failure, the MS follows one of the following two procedures depending on its operating mode.

EXCEPTION: If registration is not possible on recovery from lack of coverathe registered PLMN being unavailable, a MS attached to GPRS services may, optionally, continue looking for the registered PLMN for an implementation dependent time.

NOTE: A MS attached to GPRS services should use the above exception only if one or more PDP contexts are currently active.

a) Automatic Network Selection Mode Procedure

The Min the following order: 1) HPLMN (if not previously selected); 2) Each PLMN in the "User Controlle

data field in the SIM (in priority order);

data field in the SIM (in priority order); 4) Other PLMN/acce

random order; 5) Other PLMN/access technology combinations in order of decreasing signal

quality.

Wh n following the above procedure the following requirements apply:

6) In 4) and 5), the MS shall search for all access technologies it is capable of, before deciding

7) In 1), the MS shall search for all access technologies it is capable of. The MS shall staSelector with Access Technology" data field on the SIM in priority o

8) In 5), the MS shall order the PLMN/access technology combinatiodecreasing signal quality within each access technology. The order between

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If su

If regMS allow rocedure.

ut an LR failure made registration on those PLMNs unsuccessful or an entry in the "forbidden

ure

g order:

n r;

the hnology" and the "Operator

inste PLMNs contained in the "PLMN Selector" data field in the SIM (in

The u y select his desired PLMN and the MS then initiates registration on this

LAs for roaming", "forbidden LAs for regional provision of service",

PLMN/access technology combinations with different access technologies is an MS implementation issue.

ccessful registration is achieved, the MS indicates the selected PLMN.

istration cannot be achieved because no PLMNs are available and allowable, the indicates "no service" to the user, waits until a new PLMN is available and able and then repeats the p

If there were one or more PLMNs which were available and allowable, b

LAs for regional provision of service" list prevented a registration attempt, the MS selects the first such PLMN again and enters a limited service state.

b) Manual Network Selection Mode Proced

The MS indicates whether there are any PLMNs, which are available using all supported access technologies. This includes PLMNs in the "forbidden PLMNs" list and PLMNs which only offer services not supported by the MS.

If displayed, PLMNs meeting the criteria above are presented in the followin1) HPLMN; 2) PLMNs contained in the "User Controlled PLMN Selector with Access

Technology" data field in the SIM (in priority order); 3) PLMNs contained in the "Operator Controlled PLMN Selector with Access

Technology" data field in the SIM (in priority order); 4) Other PLMN/access technology combinations with received high quality signal i

random orde5) Other PLMN/access technology combinations in order of decreasing signal

quality.

In 2) and 3), an MS using a SIM without access technology information storage (i.e. "User Controlled PLMN Selector with Access Tec

Controlled PLMN Selector with Access Technology" data fields are not present) shall ad present the

priority order).

ser maPLMN using the access technology chosen by the user for that PLMN or using the highest priority available access technology for that PLMN, if the associated access technologies have a priority order. (This may take place at any time during the presentation of PLMNs). For such a registration, the MS shall ignore the contents of the "forbidden "forbidden PLMNs for GPRS service" and "forbidden PLMNs" lists.

If the user does not select a PLMN, the selected PLMN shall be the one that was selected before the PLMN selection procedure started. If no such PLMN was selected or that PLMN is no longer available, then the MS shall attempt to camp on any acceptable cell and enter the limited service state.

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II

to an

s, if available and allowable, in all rder:

1) HPLMN;

ected PLMN; Controlled PLMN Selector with Access

M (in priority order) excluding the previously

eceived high quality dom order excluding the previously selected PLMN;

ay be chosen ignoring its signal quality;

The start ction procedure.

b) M

de Procedure is the same as the procedure in

III

scanning in accordance with the requirements as election Mode. In the case that the mobile has a

stored "Equivalent PLMNs" list the mobile shall only select a PLMN if it is of a higher

is purpose, a value T minutes may be stored in the SIM. T is either in the range 6 minutes to 8 hours in 6 minute steps or it indicates that no periodic attempts shall be made. If no value is stored in the SIM, a default value of 60 minutes is used.

. PLMN Selection in HPLMN: User Reselection

At any time the user may request the MS to initiate reselection and registration onavailable PLMN, according to the following procedures, dependent upon the operating mode.

a) Automatic Network Selection Mode

The MS selects and attempts registration on PLMNof its bands of operation in accordance with the following o

2) PLMNs contained in the "User Controlled PLMN Selector with Access Technology" data field in the SIM (in priority order) excluding the previously sel

3) PLMNs contained in the "Operator Technology" data field in the SIselected PLMN;

4) Other PLMN/access technology combinations with the rsignal in ran

5) Other PLMN/access technology combinations, excluding the previously selected PLMN in order of decreasing signal quality or, alternatively, the previously selected PLMN m

6) The previously selected PLMN

previously selected PLMN is the PLMN which the MS has selected prior to the of the user resele

NOTE 1: If the previously selected PLMN is chosen, and registration has not been attempted on any other PLMNs, then the MS is already registered on the PLMN, and so registration is not necessary.

anual Network Selection Mode

The Manual Network Selection MoAutomatic Network Selection Mode.

. PLMN Selection In VPLMN

If the MS is in a VPLMN, the MS shall periodically attempt to obtain service on its HPLMN or higher priority PLMN listed in "user controlled PLMN selector" or "operator controlled PLMN selector" by defined in the Automatic Network S

priority than those of the same country as the current serving PLMN which are stored in the "Equivalent PLMNs" list. For th

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LMN or higher priority PLMN shall be as specified below:

he MS shall limit its attempts to access higher priority

ly the priority levels of Equivalent PLMNs of the same country as the current

2.4.2 Cell l

I. t

OneSele Technology”, “User Controlled PLMN Selector with Access Technology” and “Operator Controlled PLMN Selector with Access Technology” data

include associated access technologies for each PLMN entry. The PLMN/access technology combinations are listed in priority order. If an entry includes

rity is defined for the preferred access technology and the priority is an implementation issue.

in Idle Mode.

The attempts to access the HP

1) The periodic attempts shall only be performed in automatic mode when the MS is roaming;

2) After switch on, a period of at least 2 minutes and at most T minutes shall elapse before the first attempt is made;

3) The MS shall make an attempt if the MS is on the VPLMN at time T after the last attempt;

4) Periodic attempts shall only be performed by the MS while in idle mode; 5) If the HPLMN or higher priority PLMN is not found, the MS shall remain on the

VPLMN. 6) In steps 1), 2) and 3) t

PLMNs to PLMNs of the same country as the current serving VPLMN. 7) On

serving VPLMN shall be taken into account to compare with the priority level of a selected PLMN.

Se ection[4]

Sta es and State Transitions in Idle Mode

UE Cell selection is controlled by both NAS and AS stratums in idle mode.

The NAS may control the cell selection by: providing information on RAT(s) associated with the selected PLMN;

maintaining lists of forbidden registration areas; providing a list of equivalent PLMNs;

or several RATs may be associated with the selected PLMN. The “HPLMN ctor with Access

fields in the SIM

more than one access technology, then no prio

The AS shall attempt to find a suitable cell to camp on.

Figure 2-1 shows the states and procedures

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Initialell SelectionC

Any CellSelection

go herewhen noUSIM inthe UE

USIM inserted

Camped onany cell

go here whenever anew PLMN is

selected

1no cell information

stored for the PLMNcell information

stored for the PLMN

Storedinformation

Cell Selectionno suitable cell found

no suitablecell found

Cell Selectionwhen leaving

connectedmode

suitable cell found 2

suitablecell found

Campednormally

suitable cell found

no suitablecell found

leaveidle mode

return toidle mode

Connectedmode Cell

ReselectionEvaluationProcess

suitablecell found

trigger

no suitablecell found

1

Cell Selectionwhen leaving

connectedmode

no acceptable cell found

acceptablecell found

acceptablecell found

suitablecell found 2

leaveidle mode

return toidle mode

Connectedmode

(Emergencycalls only)

CellReselectionEvaluationProcess

acceptablecell found

trigger

no acceptablecell found

NAS indicates thatregistration on selected

PLMN is rejected(except with cause #14

or #15 [5][16])

Figure 2-1 Idle Mode Cell Selection and Reselection

In any state, a new PLMN selection causes an exit to number 1.

In order to complete above state transition, following states for cell selection in idle mode are defined:

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e

n

he UE shall inform the NAS and camp on this cell and obtain limited service, state ped on any cell.

IV

In this state, the UE shall perform the following tasks:

Camped normally state Any cell selection State Camped on any cell State Leaving connected mode

II. Camped Normally State

In this state, the UE obtains normal service and performs the tasks as following: 1) Select and monitor the indicated PICH and PCH of the cell according to

information sent in system information; 2) Monitor relevant System Information; 3) Perform necessary measurements for the cell reselection evaluation procedure; 4) UE executes the cell reselection evaluation process on the following

occasions/triggers: UE internal triggers; When information on the BCCH used for the cell reselection evaluation procedur

has been modified

If after a Cell reselection evaluation process a better cell is found, the Cell reselection procedure is performed. If no suitable cell is found, the UE shall enter the state Any cell selection.

If a necessary NAS registration is rejected, the UE shall enter the Any cell selectionstate, except if the LR is rejected with cause #14 or cause #15. The mobile station shall search for a suitable cell in another location area in the same PLMN if the LR is rejected with cause #15.

When UE leaves idle mode in order to enter the state Connected mode, the UE shallattempt to access the current serving cell. If the access attempt to the serving cell fails,the UE shall use the Cell reselection evaluation procedure.

III. Any Cell Selection State

In this state, the UE shall attempt to find an acceptable cell of any PLMN to camp on,trying all RATs that are supported by the UE and searching first for a high quality cell.

The UE, which is not camped on any cell, shall stay in this state until an acceptablecell is found.

The state Any cell selection is also entered if the NAS indicates that a locatioregistration is rejected except if the LR is rejected with cause #14 or cause #15, or if there is no USIM in the UE.

If an acceptable cell is found, tCam

. Camped on any Cell State

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t System Information; urements for the cell reselection evaluation procedure; selection evaluation process on the following

When information on the BCCH used for the cell reselection evaluation procedure

V

Cam ate cells for this selection are the cell(s) used immediately

suita Stored information cell selection procedure shall be used.

When returning to idle mode after an emergency call on any PLMN, the UE shall select

V

This procedure requires no prior knowledge of which RF channels are UTRA carriers. nnels in the UTRA bands according to its capabilities to

find a suitable cell of the selected PLMN. On each carrier, the UE need only search for

n cell parameters, e.g. scrambling codes, from previously received

procedure shall be started.

3) Cell selection criteria

The cell selection criterion S is fulfilled when:

1) Select and monitor the indicated PICH and PCH of the cell; 2) Monitor relevan3) Perform necessary meas4) Execute the cell re

occasions/triggers: UE internal triggers;

has been modified; 5) Regularly attempt to find a suitable cell of the selected PLMN trying all RATs that

are supported by the UE. If a suitable cell is found, this causes an exit to number 2 in Figure 2-1.

. Leaving Connected Mode

When returning to idle mode, the UE shall use the procedure Cell selection when leaving connected mode in order to find a suitable cell to camp on and enter state

ped normally. Candidbefore leaving connected mode. If a suitable cell is found, then the AS reports this event to NAS to be capable to perform necessary NAS registration procedures. If no

ble cell is found, the

If no suitable cell is found in cell reselection evaluation process, the UE enters the state Any cell selection.

an acceptable cell to camp on. Candidate cells for this selection are the cell(s) used immediately before leaving connected mode. If no acceptable cell is found, the UE shall continue to search for an acceptable cell of any PLMN in state Any cell selection.

I. Cell Selection Process

1) Initial Cell Selection

The UE shall scan all RF cha

the strongest cell. Once a suitable cell is found this cell shall be selected.

2) Stored Information Cell Selection

This procedure requires stored information of carrier frequencies and optionally also information omeasurement control information elements. Once the UE has found a suitable cell for the selected PLMN the UE shall select it. If no suitable cell of the selected PLMN is found the Initial cell selection

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for FDD cells: Srxlev > 0 AND Squal > 0

for TDD cells: Srxlev > 0

ensation

Where: Squal = Qqualmeas – Qqualmin Srxlev = Qrxlevmeas - Qrxlevmin - Pcomp

Squal Cell Selection quality value (dB). Applicable only for FDD cells.

Srxlev Cell Selection RX level value (dB)

Qqu measal red cell quality value. The quality of the received signal expressed in

for FDD cells.

MeasuCPICH Ec/N0 (dB) for FDD cells. CPICH Ec/N0 shall be averaged. Applicable only

Q vmeasrxle Measured cell RX level value. This is received signal, CPICH RSCP for FDD cells (dBm) and P-CCPCH RSCP for TDD cells (dBm).

Qqualmin Minimum required quality level in the cell (dB). Applicable only for FDD cells.

Qrxlevmin Minimum required RX level in the cell (dBm)

Pcompensation max(UE_TXPWR_MAX_RACH – P_MAX, 0) (dB)

UE_TXPWR_MAX_RACH

Maximum TX power level an UE may use when accessing the cell on RACH (read in system information) (dBm)

P_MAX Maximum RF output power of the UE (dBm)

VII. Cell Status and Cell Reservations

Cell barred (IE type: "barred" or "not barred"), r use (IE type: "reserved" or "not reserved"),

re extension (IE type: "reserved" or "not reserved").

e barred", "not reserved" for operator use and "reserved" for future extension (Cell Reservation Extension),

Cell status and cell reservations are indicated with the Cell Access Restriction Information Element in the System Information Message by means of three Information Elements:

Cell Reserved for operato Cell reserved for futu

When cell status is indicated as "not barred", "not reserved" for operator use and "not reserved" for future extension (Cell Reservation Extension),

The UE may select/re-select this cell during the cell selection and cell re-selection procedures in idle mode and in connected mode.

Wh n cell status is indicated as "not

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ct/re-select this cell if in the

nge 0 to 9 and 12 to 14 shall behave as e value "not allowed" in the IE

r" and the maximum value for Tbarred.

this cell, not even for emergency calls. The UE shall ignore the "Cell Reserved for future extension (Cell Reservation

nsion) use" IE. all se ll according to the following rule:

IE in Cell Access Restriction IE ncy if

he UE is cam hall exclude the barred cell from the neighbouring cell list until the expiry of a time interval T

is sent v s information in th

If the UE does n cell, and the barred cell remains to be the "best" , the UE sha

status of the barIf the "Intra-frequency cell re-selection indicator" IE is set to "not allowed" the UE

not re-sele e Intra-fre shall be ignored, i.e. even if

it is set to "not allowed" the UE may select another intra-frequency cell. d cel after expiry of the time

ag

T election to an hange of RAT.

VI ss Control

formation on cell access restrictions associated with the Access Classes is broadcast as system information. Table 2-1 describes cell access restriction

UEs shall behave as if cell status "barred" is indicated using the value "not allowed" in the IE "Intra-frequency cell re-selection indicator" and the maximum value for Tbarred.

When cell status is indicated as "not barred" and "reserved" for operator use,

UEs assigned to Access Class 11 or 15 may selehome PLMN.

UEs assigned to an Access Class in the raif cell status "barred" is indicated using th"Intra-frequency cell re-selection indicato

When cell status "barred" is indicated, The UE is not permitted to select/re-select

Exte The UE sh lect another ce If the "Intra-frequency cell re-selection indicator"

is set to value "allowed", the UE may select anotheselection/re-selection criteria are fulfilled.

r cell on the same freque

If t ping on another cell, the UE s

barred. The time intervalia system information in a barred cell together with Cell statue Cell Access Restriction IE. ot select another

Tbarred

one ll after expiry of the time interval Tbarred again check whether thered cell has changed.

shall ct a cell on the same frequency as the barred cell. For emergencycall, th quency cell re-selection indicator IE"

If the barre l remains to be the "best" one, the UE shallinterval Tbarred

he res

ain check whether the status of the barred cell has changed.

other cell may also include a c

II. Acce

In

information element.

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Table 2-1 Cell Access Restriction Information Element

Information Element/Group name

Need Type and Reference Semantics description

Cell Barred MP Enumerated(not barred, barred)

Intra-frequency cell re-selection indicator

CV- Barred

Enumerated(not allowed, allowed)

Tba edrr

[s]

CV- Barred

Integer (10,20,40,80,160,320,640,1280)

[4]

Cell Reserved for MP Enumerated(reserved, not operator use reserved)

Cell MP Enumerated(reserved, not Reservation Extension reserved)

Acces

Access Class 0, the Access Class 1

of its access class stored

s Class Barred CV Default is no access class barred is applied. list -SIB3-

MD The first instance of the parameter corresponds to

second toand so on up to Access Class 15. UE reads this IE

in SIM.

>Access Class Barred MP Enumerated (not barred, barred)

Condition Explanation

Barr if the IE "Cell Barred" has the value "Barred"; ed The IE is mandatory present otherwise the element is not needed in the message.

SIB3-MD The IE is mandatory and has a default value if the IE "Cell Access Restriction" is included in SIB 3. Otherwise the IE is not needed.

The UE shall ignore Access Class related cell access restrictions when selecting a cell cess on that cell is

not allowed for any of the Access Classes of the UE. A change of the indicated access restriction shall not trigger cell re-selection by the UE.

to camp on, i.e. it shall not reject a cell for camping on because ac

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cell access restrictions shall be checked by the UE before sending an RRC CONNECTION REQUEST message when entering Connected Mode

ction to UTRAN, and for a UE which already is in Connected

IX. Emergency

E ll be allowed in all cells whose barred status is not barred, indep ction due to cell re

A restriction on emergency calls, if needed, shall be indicated in the "Access class b cces 1 UEs with access class 0 n IM not allowed to initiate emergency calls in this cell. For UEs with access clas 1 t mergency calls are not allowed if both access class 10 and the relev ce ed. Otherwise, emergency calls are allowed for those UEs.

2.4.3 Cell

I. M Rules Cel

If the system information broa the serving cell indicates that hierarchy cell s is us d, then for intra-frequencmeasurement int measurements, the UE shall:

Use Squal for FDD cel d Srxlev for TDD for Sx and apply the following rules: If Sx > Sintrasearch, UE need not perform intra-frequency m

If Sx <= Sintrasearch, perform intra-frequency measurementsIf Sintrasearch is not sent for serving cell, perform intra-frequ ts.

If Sx > Sintersearch, UE need not perform inter-frequency mIf Sx <= Sintersearch, perform inter-frequency measurementIf Sintersearch is not sent for serving cell, perform inter-frequ

If Sx > SsearchRAT m, UE need not perform measurementIf Sx <= SsearchRAT m, perform measurements on cells of ".

s ent su ements on cells of RAT "m".

II. Highest Ranked Cells with Access Restrictions

For the highest ranked cell (including serving cell) according to cell reselection criteria, t shall check ons.

If that cell and other cells have to be excluded from the candidate list, the UE shall not c these as c highest ranked cell

Access Class related

from UTRAN Idle mode. Cell access restrictions associated with the Access Classes shall not apply when the initial access for entering Connected Mode is triggered by an Inter-RAT cell re-seleMode.

Call

mergency calls shaendent of restri s servations.

arred list" IE. If a to 9 or without a

s class SI are

0 is indicated as barred in a cell,

ses 1ant ac

o 15, ess class (11 to 15) are barr

Reselection

easurement for l re-Selection when HCS not Used

dcast in tructure (HCS)

s andnot

er-RAT

ls an

e y and inter-frequency

easurements. . ency measuremeneasurements s. ency measurements. s on cells of RAT "m". RAT "m

If SsearchRAT m i not s for serving cell, perform mea r

he UE if the access is restricted according to the rules of cell reservati

onsider andidates for cell reselection. This limitation is removed when thechanges.

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III. Cell Reselection Criteria

rarchical cell re-selection rules

The following cell re-selection criteria are used for intra-frequency cells, inter-frequency cells and inter-RAT cells:

The quality level threshold criterion H for hierarchical cell structures is used to determine whether prioritized ranking according to hieshall apply, and is defined by:

Hs = Qmeas,s - Qhcss

Hn = Qmeas,n - Qhcsn – TOn * Ln

If it is indicated in system information that HCS is not used, the quality level threshold lied.

The cell-ranking criterion R is defined by:

criterion H is not app

The cell-ranking criterion R is defined by:

Rs = Qmeas,s + Qhysts

Rn = Qmeas,n - Qoffsets,n - TOn * (1 – Ln)

where:

TOn = TEMP_OFFSETn * W(PENALTY_TIMEn – Tn)

Ln = 0 if HCS_PRIOn = HCS_PRIOs

L = 1 if HCS_PRIO <> HCS_PRIO

n r the duration of

HCS is indic

rm

on

0. at HCS is not

n n s

W(x) = 0 for x < 0W(x) = 1 for x >= 0

TEMP_OFFSET applies an offset to the R criteria foPENALTY_TIMEn after a timer Tn has started for that neighbouring cell.

TEMP_OFFSETn and PENALTY_TIMEn are only applicable if the usage ofated in system information.

The UE shall perfo ranking of all cells that fulfil the S criterion among

all cells that have the highest HCS_PRIO among those cells that fulfil the criteriH >= 0. Note that this rule is not valid when UE high-mobility is detected.

all cells, not considering HCS priority levels, if no cell fulfil the criterion H >= This case is also valid when it is indicated in system information thused, that is when serving cell does not belong to a hierarchical cell structure.

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cified above, deriving Qmeas,n and Qmeas,s and calculating the R values using CPICH RSCP, P-CCPCH

em information, TEMP_OFFSET1n is used alculate TOn. If it is indicated in system information that

HCS is not used, TEMP_OFFSETn is not applied when calculating Rn. The best

he best cell, then the UE shall perform cell

and the quality measure for cell selection he UE shall perform a second ranking of

eria specified above, but using the ing the Qmeas,n and Qmeas,s and

CS is indicated in system information, TEMP_OFFSET2n is in system information that HCS is not used,

TEMP_OFFSETn is not applied when calculating Rn. Following this second election to the best ranked FDD cell.

llowing conditions are met:

cell during a time interval

mped on the current serving cell.

2.4.4 Location Update and Routing Area Update[3]

I.

d depending ates exist

-GPRS services. The conditions of when a MS entering corresponding state are described in

The cells shall be ranked according to the R criteria spe

RSCP and the averaged received signal level as specified in [10] and [11] for FDD, TDD and GSM cells, respectively.

The offset Qoffset1s,n is used for Qoffsets,n to calculate Rn, the hysteresis Qhyst1s is used for Qhysts to calculate Rs.

If the usage of HCS is indicated in systfor TEMP_OFFSETn to c

ranked cell is the cell with the highest R value. If a TDD or GSM cell is ranked as t

re-selection to that TDD or GSM cell. If an FDD cell is ranked as the best cell and the quality measure for cell selection

and re-selection is set to CPICH RSCP, the UE shall perform cell re-selection to that FDD cell.

If an FDD cell is ranked as the best cell and re-selection is set to CPICH Ec/No, tthe FDD cells according to the R critmeasurement quantity CPICH Ec/No for derivcalculating the R values of the FDD cells. The offset Qoffset2s,n is used for Qoffsets,n to calculate Rn, the hysteresis Qhyst2s is used for Qhysts to calculate Rs. If the usage of Hused to calculate TOn. If it is indicated

ranking, the UE shall perform cell re-s

In all cases, the UE shall reselect the new cell, only if the fo

The new cell is better ranked than the serving Treselection.

More than 1 second has elapsed since the UE ca

State and State Transition in Location/Routing Area Update

Location registration can be described by a set of states, which are entereon responses to location registration (LR) requests. Independent update stfor GPRS and for non-GPRS operation in MSs capable of GPRS and non

Table 2-2.

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UE enter this state When

Table 2-2 UE state list and enter condition

UE State

Updated An LR request is accepted

Roaming not allowed

a) PLMN not allowed;

b) Location area not allowed;

MS receives an LR reject message with the cause:

c) Roaming not allowed in this location area;

d) No Suitable Cells In Location Area.

non

Updated occurs, in which cases the MS is not certain whether or not

-GPRS

Not Any LR failure not specified for states ‘Roaming not allowed’ or ‘Idle, No IMSI’ the network has received and accepted the LR attempt.

Updated Same as non-GPRS

Idle, No IMSI

There is no SIM.

Roaming

b) Location area not allowed;

c) Roaming not allowed in this location area;

not allowed e) illegal ME;

f) illegal MS;

g) GPRS services and non-GPRS services not allowed;

h) GPRS services not allowed in this PLMN;

MS receives an LR reject message with the cause:

d) No Suitable Cells In Location Area.

a) PLMN not allowed;

Not Updated

Same as non-GPRS

GPRS

a) PLMN not allowed;

b) Location area not allowed;

c) Roaming not allowed in this location area;

Roaming not allowed

MS receives an LR reject message with the cause:

d) No Suitable Cells In Location Area.

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te that trigger a new LR request. The actions that may be taken while being in the various states are also outlined in this Table 2-3 below summarizes the events in each sta

table.

Table 2-3 LR Process States and Allowed Actions

Location registration New LR request when

state Changing Changing Changing

Other Cell registration area (6) PLMN(8)

Updated, (5) No Yes Yes (2)

Idle, No I No No No MSI (7) No

Roaming not all owed:

a) Idle, PLMN not allowed No No No Yes

b) Idle, LA not allowed Yes No No Yes(7)

c) Idle, Roaming not allowed Yes No

in this LA No Yes(7)

d) No Suitable Cells In Location Area

Yes No No Yes(7)

Not updated Yes(1) Yes Yes (2)&(3)&(4)&(5)

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Location registration New LR request when

state on area (6) PLMN(8)

Other Changing Changing Changing

Cell registrati

1): for MS capable of GPRS n at least one of both update states is NOT UPDATED.

2): A new LR is m Periodic Location Updating timer o u

3): If a normal call request R request is made. If successful the updated state is entered and the call may be made.

4): a manual network reselection has been performed, an acceptable cell of the selected PLMN is present, and the MS is not in th

5): An LR request indicatin hen the response to an outgoing request shows that the MS is unknown in the VLR or SGSN, respectively

6): That is to s regi eceived registration area identity differs from the one stored in th the LAI or the PLMN identity is not contained in any of the lists "forbidden LAs for roaming", "forbidden PLMNs for GPRS service" or "forbidden PLMNs" respectively

7): A GPRS M t perform a new LR when the new routing area is part of a LA contained in the list of "forbid g

8): If a new PLMN is entere ll perform a routing area update if the LAI or the PLMN identity is not contained in any of the lists "forbidden LAs for roaming", "forbidden LAs for regional pro or GPRS service" or "forbidden PLMNs"

and non-GPRS services whe

ade when the r Periodic Ro

periodic registration timer expires includingting Area Update timer.

is made, an L

e UPDATED state on the selected PLMN.

g Normal Location Updating is also made w

ay a newe MS, and

stration area, i.e. the r

LAs for regional provision of service", "forbidden

S shall noden LAs for re ional provision of service".

d, a MS which is attached for PS services sha

vision of service", "forbidden PLMNs f

. Periodic Location Registration II

Periodic updating may be used to notify periodically the availability of the mobile ion Updating timer (T3212 for non-GPRS

ope ic Routing Area Update RS operation) with the fo istics: 1) Upon on of the en the formation indicates that periodic

locatio stration shal ppli is n g, the shall h a rand alue be n 0 and the bro st or signaled time-out rted. Namely, let t1 be the new T3212 timeout value, the new timer

rted at a value randomly, uniformly drawn en 0 a 1. 2) 212 shall be within the range of 1 de our to 255

a gran larity of 1 deci-hour.

station to the network. A Periodic Locatration) and a Period

llowing character timer (T3312 for GP

switchn regi

MS or whl be a

system ined, and the timer ot runnin timer

be loaded witvalue and sta

om v twee adca

shall be sta betwe nd tThe time-out value for T3deci-hours with

ci-hu

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3) When the timer reaches its expiry value, it shall be initiated with respect to the relevant time-out value, and the MS shall initiate the Periodic Location Registration corresponding to the expired timer.

4) The Periodic Location Updating timer shall be prevented from triggering Periodic ng du connec en th

the Periodic Location Updating timer shall be initiated with respect to the a then s Thereafter, th ocedure in iii) shall be

ed. 5 Area Update timer shall be prevented from triggering the

Routing Area Update d eady state. At transition from Ready to e the Periodic Routing Area Update timer shall be initiated with

to its time-out then ed. Thereafter, the procedur followed.

6) dating timer shall be prevented from triggering the Periodic Location

Un mode or the MS uses non-GPRS

servi7

e or a change in the signalled time-out v

L 1m timer shall be restarted with the value t modulo t1.

T

TA TE ACCEPT. The value of the timer T3312 shall be uniq

III.

The aa

W SI attach/detach operation applies, a MS shall send the IMSI detach essage to the network when the MS is powered down or the SIM is removed while

being in the update state UPDATED. The IMSI detach message will not be

When the MS returns to the active state, the MS shall perform an LR request indicating

Location Updati ring ted mode. Wh e MS returns to idle mode,

broadcast time-out vfollow

lue, tarted. e pr

) The Periodic Routing Periodic Standby stat

uring R

respect value, start e in iii) shall be

If the MS performs a successful combined Routing Area Update the Periodic Location Up

pdating until the MS starts using Location Updating procedure, for example because of a changed network operatio

ces only. ) When a change in the time-out value occurs (at a change of serving cell or a

change in the broadcast time-out valualue), the related timer shall be reloaded so that the new time to expiry will be:

"old time to expiry" modulo "new time-out value".

et t be the new T3212 timeout value and let t be the current timer value at the oment of the change to the new T3212 timeout value; then the

he value of timer T3212 is sent by the network to the MS in SIB 1.

he value of timer T3312 is sent by the network to the MS in the messages ATTACH CCEPT and ROUTING AREA UPDA

ue within a RA.

IMSI Attach/Detach Operation

system information will contain an indicator indicating whether or not IMSI ttach/detach operation is mandatory to use in the cell. The MS shall operate in ccordance with the received value of the indicator.

hen IMm

acknowledged by the network.

IMSI attach, provided that the MS still is in the same registration area. If the registration area has changed, an LR request indicating Normal Location Updating.

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RS MSs in MS operation modes A or B, if the network

If thebe othe proc location

If the hat operate in mode A or B and wish

use resp

IV. No

If durece

punablshall b

2.4.5 Paging[

I. Disc

The pow . When DRX is used the UE needs only to monitor one Page

For deci RX cycle length for CS, CN domain specific DRX cycle length for PS, and UTRAN DRX cycle length coefficient.

engths:The UE may be attached to different CN domains with different CN domain specific DRX cycle lengths. The UE shall store

omain the UE is

ormation. On the other hand, the PS CN specific DRX cycle length coefficient shall be updated after the negotiation between the UE and PS CN by NAS procedure. If no specific value "k" is negotiated in NAS procedure, the

IMSI attach for non-GPRS services when the MS is IMSI attached for GPRS services. This procedure is used by GPoperates in network operation mode I.

network operates in mode I, GPRS MSs that operate in mode A or B and wish to r are simultaneously IMSI attached for GPRS and non-GPRS services, shall use combined GPRS attach and the combined and periodic routing area updating edures instead of the corresponding IMSI attach and normal and periodic

area updating.

network operates in mode II, a GPRS MSs tto be or are simultaneously IMSI attached for GPRS and non-GPRS services, shall

location updating procedure and routing area updating procedure listed above ectively.

Suitable Cells in Location Area

ring location registration the LR response "No Suitable Cells In Location Area" is ived:

The MS shall attempt to find another LA of the same PLMN on which it received the LR res onse. If the MS is able to find another LA it shall attempt registration. If the MS is

e to find an LA in the PLMN, Automatic or Manual Mode Selection Procedure of e followed, depending on whether the MS is in automatic or manual mode.

4][5]

ontinuous Reception

UE may use Discontinuous Reception (DRX) in idle mode in order to reduce er consumption

Indicator, PI, in one Paging Occasion per DRX cycle.

FDD, The DRX cycle length shall be 2k frames, where k is an integer and is ded by three parameters: CN domain specific D

Their usage is described below.

CN domain specific DRX cycle l

each CN domain specific DRX cycle length for each CN dattached to and use the shortest of those DRX cycle lengths. The CS CN specific DRX cycle length coefficient shall be updated locally in the UE using information given in system inf

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X cycle length given for PS CN domain in system information.

o the value or the shortest value

CH state, it equals to the shortest value of the

e

ber in the paging channel cycle length of 4096

cle length

cator within a Paging Occasion that the UE shall read is similarly tual position in the frame.

The Page Indicator to use is calculated by using the following formula:

where DRX Index = IMSI div 8192

d is given in IE "Number of PI per frame", part of system information in FDD mode. This parameter describes the number of simultaneous users in a cell which can be paged in the same paging occasion.

If the UE has no IMSI, for instance when making an emergency call without USIM, the UE shall use as default numbers, IMSI = 0 and DRX cycle length = 256 (2.56 s), in the formulas above.

UE and PS CN shall use the DR

UTRAN DRX cycle length: The UTRAN DRX cycle length is transferred to UE by RRC CONNECTION SETUP message irrespective of CN domain.

For a UE in idle mode, the DRX cycle length equals tof the following:

Any of the stored CN domain specific DRX cycle length for the CN domains the UE is only attached to with no signaling connection established.

For a UE in CELL_PCH state or URA_Pfollowing:

UTRAN DRX cycle length; Any of the stored CN domain specific DRX cycle length for the CN domains th

UE is only attached to with no signaling connection established.

In the UTRAN side, based on all the following information to determine the Paging Occasions that is the actual frame numframes:

IMSI the number of available SCCPCHs that carry a PCH (K) the Cell System Frame Number (SFN) the DRX cy

The value of the Paging Occasion is determined as follows:

Paging Occasion= {(IMSI div K) mod DRX cycle length} + n * DRX cycle length

Where n = 0, 1, 2… as long as SFN is below its maximum value.

The actual Page Indidetermined based on IMSI which is the ac

PI = DRX Index mod Np

In the UE side, based the same information as UTRAN to determine and monitor its paging indicator in the PICH frame with SFN given by the Paging Occasion.

In FDD mode, Np = (18,36,72,144) is the number of Page Indicators per frame, an

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rmation[5]

ation

information. The master

If segmentsepa

To asystemultde-m

The chan y the following parameters:

all segments;

(phase) of the first segment within one cycle of the Cell System

SEG_COUNT-1). The position of the subsequent segments is calculated S(i) = SIB_POS(i-1) + SIB_OFF(i).

perio ove decides the

formation block occurs, fulfils the following relation:

d SIB_REP = SIB_POS(i)

ned in below.

2.4.6 System Info

I. Structure of System Inform

In the tree structure of system information, a master information block gives references and scheduling information to a number of system information blocks in a cell. The system information blocks contain the actual systeminformation block may optionally also contain reference and scheduling information to one or two scheduling blocks, which give references and scheduling information for additional system information blocks. Scheduling information for a system information block may only be included in either the master information block or one of the scheduling blocks.

Scheduling of each SIB, and SB (if existing) is performed by the RRC layer in UTRAN. ation to a SIB is used, it should be possible to schedule each segment

rately.

llow the mixing of system information blocks with short repetition period and m information blocks with segmentation over many frames, UTRAN may

iplex segments from different system information blocks. Multiplexing and ultiplexing is performed by the RRC layer.

scheduling of each system information block broadcast on a BCH transport nel is defined b

the number of segments (SEG_COUNT); integer(1…16),default value 1 The repetition period (SIB_REP). The same value applies to integer(4,8,16,32,64,128,256,512,1024,2048,4096) in frames

The positionFrame Number (SIB_POS(0)). Since system information blocks are repeated with period SIB_REP, the value of SIB_POS(i), i = 0, 1, 2, … SEG_COUNT-1 must be less than SIB_REP for all segments;

The offset of the subsequent segments in ascending index order (SIB_OFF(i), i = 1, 2, …using the following: SIB_PO

The scheduling is based on the Cell System Frame Number (SFN) which has the d of 4096 frames in time. The scheduling information defined ab

segments of a SIB, the position of each segment, and repetition of each segment. The SFN of a frame at which a particular segment, i, with i = 0, 1, 2, SEG_COUNT-1 of a system in

SFN mo

The scheduling of the master information block is fixed as defi

SEG_COUNT = 1 SIB_POS = 0

SIB_REP = 8 (FDD)

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tition of 8 frames is used to transmit SFN of the cell.

s in accordance with the scheduling defined for each system information block.

II. Reception of SYSTEM INFORMATION Messages by the UE

The UE shall read system information broadcast on a BCH transport channel in idle in states CELL_FACH, CELL_PCH, URA_PCH.

election. When switching on, the UE may store system information blocks with cell, PLMN or

with area scope cell to be invalid and store and use

cope cell and PLMN to be invalid and store and use the new one.

N which is not indicated by higher layers to be equivalent to p viously selected PLMN, the UE shall consider all system

information blocks with area scope Equivalent PLMN to be invalid and store and use

II

PLMN identity, UE can verify that it is the selected PLMN.

ling information. By reading the scheduling information to each SIB, UE can know the scope of

ported by UE, it will skip reading and monitoring them.

SIB_OFF=2

It needs to be pointed out that the first two frames in each repe

The system information is continuously broadcast on a regular basi

mode and in the connected modeWhen switching off, The UE shall consider all stored system information blocks as invalid except those stored in USIM for use in a stored information cell-s

Equivalent PLMN area scope (including their value tag if applicable) for different cells and different PLMNs, to be used if the UE returns to these cells.

When selecting a new cell within the currently used PLMN, the UE shall consider all current system information blocks the new one.

After selecting a new PLMN, the UE shall consider all current system information blocks with area s

After selecting a new PLMthe identity of the re

the new one.

I. Actions upon Reception of the Master Information Block and Scheduling Block(s)

When selecting a new cell, the UE shall read the master information block. The UE may use the pre-defined scheduling information to locate the master information block in the cell. In the MIB, MIB value tag, PLMN types, PLMN identity, and scheduling information to other SIBs are the most important IEs.

By reading the PLMN type, UE can know the type of PLMN of current network. By reading the By comparing the value tag in the master information block with the value tag

stored for this cell and this PLMN, UE can know whether or not to read and store schedu

each SIB, the value tag of it, and the actual position of it. By comparing the value tag to each SIB with the value tag stored for this cell and this PLMN, UE can know whether or not to read and store the SIB. When everything is ok, UE is ready to read them. For those SIBs that are not sup

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IV

rmation

u

1)

The ncluded in this system information block s

inforconn

stem information" to the by the IE "CN domain identity";

ate frame ccasions and Page indicator as specified in 3GPP TS

imers and constants in idle mode" for the relevant

Information

reference escription

. Actions upon Reception of SYSTEM INFORMATION Blocks

The UE may use the scheduling information included within the master infoblock and the scheduling blocks to locate each system information block to be acq ired. If the UE receives a system information block in a position according to the scheduling information and consider the content valid, it will read and store it for future use. Below we will introduce the important IEs in each SIB in more detail.

System information block 1

UE should store all relevant IEs iirre pective of UE’s mode. The system information block type 1 contains NAS system

mation as well as UE timers and counters to be used in idle mode and in ected mode, as described in Table 2-4.

If in idle mode, the UE should store all relevant IEs included in this system information block if the "PLMN Type" in the variable SELECTED_PLMN has the value "GSM-MAP" and the IE "PLMN type" in the Master Information Block has the value "GSM-MAP" or "GSM-MAP and ANSI-41". The UE shall also:

forward the content of the IE "CN domain specific NAS synon-access stratum entity indicated

use the IE "CN domain specific DRX cycle length coefficient" to calculnumber for the Paging O25.304;

use the values in the IE "UE Ttimers and counters.

If in connected mode the UE shall not use the values of the IEs in this system information block except for the timers and constant values given by the IE "UE timers and constants in connected mode".

Table 2-4 Important IEs in SIB1

Element/ Need Multi Type and

Semantics dGroup name

CN information elements

CN common GSM-MAP NAS system information

MP Octet string(1..8 )

The first octet contains octet 1 of the NAS system information element, the second octet contains octet 2 of the NAS system information element and so on.

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reference

Information Element/ Need Multi

Type and Semantics description

Group name

CN domain system

1 to <maxCN

information list MP

domains Send CN information for each CN domain.

>

>CN domain MP

Enumerated (CS domain,

identity PS domain)

>GSM-MAP

>>CN domain The firspecific NAS Octet system information element, the seconsystem

MP string(1..8 ) octet contains octet 2 of the NAS

information information element and so on.

st octet contains octet 1 of the NAS d

system

UE information

UE conidle

Table 2-6 - For parameters with need OP, the

Timers and stants in mode

MD

UE Timers and constants in idle mode, reference to

Default value means that for all timers and constants

- For parameters with need MD, the defaults specified in Table 3 apply and

parameters are absent

UE Timers and constants in connected mode

MD

and constants in connected mode, reference to 0.0.0

constants

- For parameters with need MD, the defaults specified in Table 2 apply and

- For parameters with ne

UE Timers Default value means that for all timers and

ed OP, the parameters are absent

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Infol

Gro

Table 2-5 UE Timers and constants in connected mode

rmation E ement /

up name Need Multi Type and reference Semantics description

T302 MD by step of 200, 3000, 4000. Integer(100, 200... 2000 Value in milliseconds. Default value is

4000, 6000, 8000) One spare value is needed.

N302 MD Integer(0..7) Default value is 3.

T304 MD Integer(100, 200, 400, 1000, 2000)

Value in milliseconds. Default value is 2000. Three spare values are needed.

N MD Intege Default value is 2.. 304 r(0..7)

T305 MD Intege , 60, 120, 360, 720, infinity)

Value in minutes. Default value is 30.

Infinity means no update

r(5, 10, 30

T307 MD Integer(5, 10, 15, 230, 4

0, Value in seconds. Default value is 30.

One spare value is needed. 0, 50)

T308 MD Integ 16320)

er(40, 80, 0, Value in milliseconds. Default value is 160.

T309 MD …8) Value in seconds. Default value is 5. Integer(1

T310 MD teg r(40 .. 320

step of 40)

160. In e by Value in milliseconds. Default value is

N310 MD Integ Default value is 4. er(0 .. 7)

T311 MD Integ step

Value in milliseconds. Default value is 2000.

er(250 .. 2000 of 250)

by

T312 MD Integer (0..15) Value in seconds. Default value is 1. The value 0 is not used in this version of the specification.

N312 MD Integ 0, 250, 100, 200, 400, 60800, 1000)

er (1, 2, 4, 1 0, 0, Default value is 1.

T313 MD Integer (0..15) Value in seconds. Default value is 3.

N313 MD Integer (1, 2, 4, 10, 20, 50, 100, 200)

Default value is 20.

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Information Element /

Group name Need Multi Type and reference Semantics description

T314 MD Integer(0, 2, 4, 6, 8, 116, 2

2, Value in seconds. Default value is 12.

0)

T315 MD Integ 6180,

er (0,10, 30, 600, 1200, 1800

0, )

Value in seconds. Default value is 180.

N315 MD Integ , 10, 250, 100, 200, 400, 60800, 1000)

er (1, 2, 4 0, 0, Default value is 1.

T316 MD Integ 340, 5

in seconds. Default value is 30. er(0, 10, 20, 0, infinity)

0, Value

One spare value is needed.

Table 2-6 UE Timers and constants in idle

Information Element/Group Need Multi Type and reference Semantics description

mode

name

T Integer(100, 200... 2000 by

00, 4000,Value in milliseconds. Default

300 MP step of 200, 306000, 8000)

value is 1000.

N300 MP Integer(0..7) Default value is 3.

T312 MP Value in seconds. Default value

Integer(0 .. 15) is 1.

N312 MP 1, 2, 4, 10,

1. Integer (100, 200, 400, 600, 800,

20, 50, Default value is

1000)

2 stem in atio block

Table 2-7 describes the Impor s ant IEs included at de, the UE shall not use the values of the IEs in this systeminformation block type 2 contai

) Sy form n 2

tant IEs in SIB2. If in in this system inform

connected mode the UE shouldtore all relev ion block. If in idle mo

information block. The system ns the URA identity.

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Table 2-7 Important IEs in SIB2

Information Element/Group name

Need Multi Type and reference

Semantics description

UTRAN mobili form on elements

ty in ati

URA identity list MP <max

1 URA>

>URA identity M bit string(16) P

3) ck

Table 2-8 describes the Import IB3. The UE should store all relevant IEs included in this system information block. If in Information Bl 4 is indicat in the ceinformation sent in that block. Otherwise, UE should n sent in SIB3. The system information block type 3 contains parameters for cell selection and re-selection.

Table 2-8 Important IEs in SIB3

formationElement/Group

name Need Multi

e and Semantics description

System information blo 3

ant IEs in Sconnected mode, and System ll, UE should read and act on

act on informatioock ed as used

In Typreference

SIB4 Indicator MP TRUE indicates that SIB4 is

Boolean broadcast in the cell.

UTRAN mobility information elements

Cell identity MP bit string(28)

Cell selection and reselection quality measure

MP

Choice of measurement (CPICH RSCP) to use as

quality measure Q for FDD cells.

SIB11/12. Both occurrences of the IE lue.

Enumerated (CPICH Ec/N0, CPICH RSCP)

Ec/N0 or CPICH

This IE is also sent to the UE in

should be set to the same va

Sintrasearch OP Integer (-32..20 by step of 2)

If a negative value is received the UE shall consider the value to be 0. [dB]

Sintersearch OP Integer (-32..20 by step of 2)

If a negative value is received the UE shall consider the value to be 0. [dB]

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p Need Multi Type and reference

Semantics description Information

Element/Grouname

Ssearch,RAT

In case the value 20 is received the l consider this IE as if it was

If a negative value is received the UE shall con 0. [dB]

MPInteger (-32..20 by step of 2)

UE shalabsent.

sider the value to be

Qqualmin 0) Ec/N0, [dB]

MP Integer (-24..

Qrxlevmin of 2)

dBm]

MP

Integer (-115..-25 by step

RSCP, [

Qhyst1s MP Integer (0..40 by step of 2)

[dB]

Qhyst2s

CV-FDD-Quality-Measure

Integer (0..40 by step of 2)

Default value is Qhyst1s

[dB]

Treselections MP Integer (0..31) [s]

Maximum allowed UL TX powe

Integer(-50..33) r

MP In dBm

Cell Access Restriction

MP Structure type For future use

4 ormation bloc

T scribes the Im nt IE in SIB5. st e all relevant IEs inclu his system in n lock. If in conne ode, and System

formation Block 6 is indicated as used in the cell, UE should read and act on herwise, UE should act on information sent in SIB5.

) System inf k 5

able 2-9 deded in t

portaformatio

sb

UE should cted m

or

Ininformation sent in that block. OtThe system information block type 5 contains parameters for the configuration of the common physical channels in the cell.

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E me

ed ulti d referenc ription

Table 2-9 Important IEs in SIB5

Informationlement/Group na

Ne M Type an e Semantics desc

SIB6 Indicator MP Boolean TRUE indicates that SIB6 is broadcast in the cell.

PhyCH information elements

PICH Power offset 0 .. +5)

Offset in dB. This is the power transmitted on the

MP Integer(-1

PICH minus power of thePrimary CPICH in FDD.

AICH Power offset MP r of

offset

AICH Powe fset also indicates the power offset for AP-AICH and for CD/CA-ICH.

This AICH Power

Primary CCPCH info OP Primary CCPCH info Note 1

PRACH system information list

MP PRACH system

information list

Secondary CCPCH system information

MP y

system informatiSecondar CCPCH

on

CBS DRX Level 1 CV-CTC

CBS DRX information H

Level 1

information

5) System information block 7

Table 2-10 describes the Important IEs in SIB7. The store all relevant IEs i in this system in rmation c nnected mode, and System Information Block 8 is indicated as used in the cell, the ould store all relevant IEs included in this system information bl act on in nt in SIB8. If in idle m UE shall n e the values system information block type 7 contains the fast changin eters interference and Dynamic persistence level.

Table 2-10 Important IEs in SIB7

Information ent/Group nam

Need Type an

f ption

UE should ncluded fo block. If in o

UE shock and of the IEs in SIB8. The g param

formation seode, the ot us

UL

Elem e Multi

red

erence Semantics descri

CHOICE mode MP

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Information Element/Group name

Need Multi Type and reference

Semantics description

>FDD

>>UL interference MP UL interference

>TDD (no data)

PhyCH information ele tsmen

PRACHs listed in system MP

information block type 5 PRACH> information block type 5.

1 to <max

The order of the PRACHs is the same as in system

>Dynamic persistence level MP Dynamic persistence level

PRACHs listed in system information block type 6

OP 1 to <maxPRAC

>

The order of the PRACHs is the same as in system info6.

H rmation block type

>Dynamic persistence level MP Dynamic persistence level

Expiration Time Factor MD Expiration

Factor 10.3.3.12

DTime efault is 1.

6) System information block 11

T es t porta t IEs in hould included in this system information block. If in idle mode, the U se the values of the IEs in this system information block. If in connected mode, the UE shall u the this system . The information b urement con cell.

able 2-11 describ he im n SIB11. The UE s store all relevant IEs E shall not u

se the values of IEs in information block systemlock type 11 contains meas trol information to be used in the

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Table 2-11 Important IEs in SIB11

Information Need Multi Type and reference Semantics description

Element/Group name

SIB12 Indicator MP Boolean TRUE indicates that SIB12

dcast in the cell. is broa

Measurement information elements

FACH measurement OP

occasion info occasion info FACH measurement

Measurement control system information

MP Measurement control system information

raction 2.5 Inte

between PLMN selection, cell selection/ reselection and location ating. Figure 2-2 shows interaction

/routing upd

PLM ction and Reselection

N Sele

Location Registration

PLMNsavailable

PLMN selected

LocationRegistration

response

ation ea

nges

RegistrAr

cha

Indicato use

tion r

Manual Mode Automatic

CM requests

ol

mode

NAS Contr

Radio measurements

Cell Selectionand Reselection

F o

PLMN ID, Cell selection/reselection criteria, Location/routing updating timer are broadcast in system information. System information is updated by paging.

igure 2-2 Interaction in Idle M de

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2.6 Implementation

2.6.1 Engineering Guideline

I. P

PLMN selection belongs to UE behav which is depending on and USIM card application. UE shall support variety kinds o LMN selector with Access Technology and other function e.g. User c PLMN selector with Access T n d PL N selecto ess Technology, HPLMN sele e ology, HPLMN s riod. Above USIM card parameters shall be set according to user requirement.

II.

Cell selection is mostly controlled by two pa , they are Qqualmin and rxlevmin. Here an example is given to illustrate how to configure these two rameters. UE to select a cell successfully, Qqualmin

s possible. But some UE maybe couldn’t finish

system cell selection. UE_TXPWR_MAX_RACH should be set

higher in macro-cell and should be set lower in micro-cell or Pico-cell. So UE_T X_RA re to n

III. Cell Reselection

If HCS not d, cell sele s controlled b ters: Sintrasearch, Sintersearch, SsearchRAT m, Treselections, Qoffset1s,n, Qoffset2s,n, Q

In order to decrease network signaling load and to increase the possibility for UEs to b o de rease ing to other cells with d /RAC or RAT. Supposing ss possibility of same frequency of t ent LAC/RAC t C/RAC. So the criteria o m e res ncy cells harder than intra-frequ s, and the hardest to inter-RA

o ensure good coverage, Sintrasearch, Sintersearch, SsearchRAT m should enable UE to reselect to a better neighboring cell as soon as possible, but Treselections shouldn’t be too short that maybe cause ping-pong cell reselection. The recommended values of these parameters are as following:

LMN Selection

ior, UE vendor implementf P

ontrolledr with Accearch pe

echnology, Operator coctor with Access T

trollechn

M

Cell Selection

rametersQpa To increase the possibility for and Qrxlevmin should be as low aregistration or any other RRC signaling procedure when Qqualmin and Qrxlevmin are low enough. So to set Qqualmin and Qrxlevmin to their minimum value is not the best solution. The recommended value of Qqualmin and Qrxlevmin are -18 dB and -115 dBm.

Besides Qqualmin and Qrxlevmin, UE_TXPWR_MAX_RACH which is read in information is also influence

XPWR_MA CH is lated etwork planning.

use re ction i mostly y following parame

hyst1s, Qhyst2s.

e paged, it is necessaifferent LAC

ry t c the possibility of UE ro m there was le

a

wo cells between differf cell reselection sh

ency cell

han cells within same LAelection to inter-frequ

T cells. ould ak e

T

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arch: 10dB Sintersearch: 8dB

n and ection

quency,

some GSM voice

support os

LMN ID planning and GSM capability. Scenario I: GSM system support UMTS cells reselection. GSM and UMTS use

nd UMTS use different PLMN ID

line for Scenario I: s of UMTS to GSM cell reselection, UMTS network shall not only

configure 2G neighbor cells but also control parameters in Table 2-12 by IB3 and SIB11.

Table 2-12 Parameters for UMTS to GSM cell reselection

Parameter Description Range Recommen

Sintrase

SsearchRAT m: 4dB Treselections: 1s

When cell reselection happens between two intra-frequency cells, Qoffset2s,Qhyst2s should be used instead of Qoffset1s,n and Qhyst1s. When cell reselhappens between any two cells of any other type instead of intra-freQoffset1s,n and Qhyst1s should be used.

IV. Paging

Pay attention to the following aspects for paging in network deployment: Control of paging success rate Control of paging load

V. Roaming between UMTS and GSM

At the beginning of UMTS network establishment, UMTS cells will be dotted inimportant area, i.e. whose coverage will not be better and more continuum thansystem. If 3G high quality service shall be used as much as possible and normal call service shall be guaranteed under such assumption, it is important to roaming from/to UMTS to/from GSM/GPRS service. Here are 2 scenarirecommended according to P

same PLMN ID Scenario II: GSM system didn’t support UMTS cells reselection. GSM a

1) Technical guide For the purpose

broadcast them in S

name ded Value

Quality

(SIB3/11)

Choice of measurement (CPICH Ec/N0 or CPICH RSCP) to use as quality measure Q for FDD cells.

CPICH Ec/N0 or CPICH RSCP

CPICH RSCP measure

Ssearch,rat Squal>Ssearch,rat, do not trigger inter-RAT system

(SIB3) measurement, (Squal = Qqualmeas-Qqualmin)(Qqualmin is inSIB3 or 11)

Integer (-32..20 by step of 2)

2

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Description Range RecommenParameter name ded Value

Qhyst1s This specifies the hysteresis value (Qhyst) for service cell in R criteria. It is used for FDD cells if the quality measure for cell selection and re-selection is set to CPICH RSCP.

0~40 by step of 2 [dB]

2

(SIB3)

Qhyst2s

(SIB3)

This specifies the hysteresis value (Qhyst) for service cell in R criteria. It is used for FDD cells if the quality measure for cell selection and re-selection is set to CPICH Ec/No.

0~40 by step of 2 [dB]

2

Treselection

(SIB3)

In all cases, the UE shall reselect the new cell, only if the following conditions are met:

- the new cell is better ranked than the serving cell during a time interval Treselection.

- morecamped on the current serving cell.

than 1 second has elapsed since the UE

Which is used to prevent Ping-pong reselection.

Integer (0..31)[s]

5

Inter-RAT cell Cell id; info list

(SIB11) Cell individual offset(-50~50 [dB]);

BSIC;

Band indicator(DCS 1800 band used/PCS 1900 band used);

BCCH ARFCN(0~1023)

Cell selection Qoffset1s,n,Qoffset2s,n,FDD Qqualmin,Qrxlevmand

in,GSM Qrxlevmin

Qqualmin=-14dB

Qoffset2s,n =0

re-selection info(SIB11)

Qoffset1s,n =0

For the purposes of GSM to UMTS cell reselection, GSM network shall not only bor cells but also control parameters in Table 2-13 by

name Range Recommended

Value

configure 3G neighbroadcast them in SI 2quater.

Table 2-13 Parameters for GSM to UMTS cell reselection,

Parameter Description

Qsearch_I Search for 3G cells if signal level is below (0-7) or above 0-15 ∞ (always

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a cription Range Recommended Value

P rameter Desname

(8-15) threshold 0 = - 98 dBm, 1 = - 94 dBm, … , 6 = - 74 dBm,

search 3G cells)

7 = ∞ (always search 3G cells) 8 = - 78 dBm, 9 = - 74 dBm, … , 14 = - 54 dBm

15 = ∞ (never search 3G cells).

FDD_Qoffset Applies an offset to RLA_C for cell re-selection to access technology/mode FDD (one or more)

0-15 0 dB.

0 = - ∞ (always select a 3G cell if acceptable), 1 = -28 dB, 2 = -24 dB, … 7= - 4dB select 3G in case of 2G

ct 3G in case of 2G signal

signal level is higher than 3G RSCP for FDD_Qoffset value;

8 = 0dB, 9= 4dB, 5 = 28 dB. selelevel is lower than 3G RSCP for FDD_Qoffset value

FDD

-16dB, 5= -10dB, 6= -14dB, 7= -12dB.

_Qmin A minimum threshold for Ec/No for UTRAN FDD cell re-selection,

0-7 -8dB

0= -20dB, 1= -6dB, 2= -18dB, 3= -8dB, 4=

S sh lue the cell and all of t e n rving

GSM cells by the value FDD_Qoffset for a period of 5 second N cells d Ec/No value is equal or greater than the value FDD_Qmin.

a s 15 se offset is increased by

Cell reselec N shall not occur within 5 secon the MS has ed a d.

In order to r e amping on 3G ch as

2) Technical guideline for Scenario II: TS shall be

clude h can use it as mention

o s d if G can not support ormation to MS. In order S turn back to

MTS cell, HPLMN selection shall be used.

Suppose UM PLMN is VPLMN. If the MS is in a VPLMN, the MS shall periodi to obtain service on its HPLMN. For

The Mexceeds

all then reselect a suitable UTRAN cell if its m value of RLA_C for the serving

easured RShe suitabls and the UTRA

CP vaon-se

measure

In case of cell reselection occurring within the previou 5 dB.

tion to UTRA

conds, FDD_Q

ds after reselect GSM cell from an UTRAN cell if a suitable GSM c

educe Ping-pong inter-RAT cell reselection and kpossible, recommended value is listed above.

ell can be fo

ep MS c

un

as mu

UM to GSM: Same as Scenario I besides that equd in Location Updating Accept message so ted to camp on GSM system.

ivalent PLMat MS

N in

GSM t UMTS: Cell reselection could not be used in thi broadcast the UMTS inf

irection to ask M

SM

U

TS PLMN is HPLMN for the user while GSM cally attempt

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this purpose, a value T minutes may be stored in the SIM, T is either in the range 6 minutes to 8 hours in 6 minute steps. Considering to making MS turn back UMTS as early as possible and save MS power consumption, 6 minutes are recommended.

VI. Standby P

Standby pow parameters: se Discontinuous Reception (DRX) in idle mode in orde to reduce

wer consumption. When DRX is used the UE needs only to monitor one Page Indicato per DRX cycle.

e UE HPLMN timer to turn back to home network, the longer timer is, the less PLMN selection is made, which will reduce power consumption.

The UE R timer is, the less LR procedu ll reduce power consumption.

The Larger LAC area is, the less does power consume. e s existed o

handset e of cells.

2.6.2 Parameters

I. PLMN selection[6]

1) EFPLMNwAcT (User Controlled PLMN Selector with Access Technology)

his EF contains the coding for n PLMNs, where n is at least eight. This information is

The The nologies for each PLMN in this list.

t Optional

ower Consumption

er consumption is effected by following The UE

po may u r

r, PI, in one Paging Occasion Th may use

may try LR when LR timer expired, the longer Lre is made, which wi

Power will be consumed faster when radio coverage hols is at the edg

i r when the

Tdetermined by the user and defines the preferred PLMNs of the user in priority order.

first record indicates the highest priority and the nth record indicates the lowest. EF also contains the Access Tech

Identifier: '6F60' Structure: transparen

SFI: '0A'

File size: 5n (where n ≥ 8 bytes) Update activity: low

Bytes Description M Length /O

1 to 3 M 3 bytes 1st PLMN (highest priority)

4 to 5 gy Identifier M 2 bytes 1st PLMN Access Technolo

6 to 8 2nd PLMN M 3 bytes

9 to 10 2nd PLMN Access Technology Identifier M 2 bytes

: :

36 to 38 M 3 bytes 8th PLMN

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Identifier: '6F60' Structure: transparent Optional

39 to 40 8th PLMN Access Technology Identifier M 2 bytes

41 to 43 9th PLMN O 3 bytes

44 to 45 O 2 bytes 9th PLMN Access Technology Identifier

: :

(5n-4) to (5n-2 MN (lowest priority) O 3 bytes ) Nth PL

(5n-1) to 5n 2 bytes Nth PLMN Access Technology Identifier O

PLMN: Mobile Country Code (MCC) followed by the Mobile Network Code (MNC).

bit = 0: access technology not selected.

Access Technology Identifier: 2 bytes are used to select the access technology where the meaning of each bit is as follows:

bit = 1: access technology selected;

Byte5n-1:

RFU

RFU

RFU

RFU

RFU

RFU

RFU

UTRAN

Byte 5n:

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RFU

RFU

RFU

RFU

RFU

RFU

GSM COMPACT

GSM

2) EFOPLMNwACT (Operator controlled PLMN selector with Access Technology)

This EF contains the coding for n PLMNs where n is determined by the operator. This information is determined by the operator and defines the preferred PLMNs in priority o record indicates y and the nth rec es the lowe contains the .

Identifier: '6F61' Structure: transparent Optional

rder. The first st. The EF also

the highest prioritAccess Technologies for each PLMN in this list

ord indicat

S FI: '11'

File size: 5n (where n ≥ Update activity: low 8 bytes)

Bytes Description M/O Length

1 to 3 1st PLMN (highest priority) M 3 bytes

4 1st PLMN Access Technology Identifier M 2 to 5 bytes

: :

36 to 38 8th PLMN M 3 bytes

39 to 40 8th Identifier M 2 bytes PLMN Access Technology

41 to 43 9th PLMN O 3 bytes

44 to 45 9th PLMN Access Technology Identifier O 2 bytes

: :

(5n-4) to (5n-2) Nth PLMN (lowest priority) O 3 bytes

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(5n-1) to 5n Nth PLMN Access Technology Identifier O 2 bytes

obile he Mobil etw NC). Access Technology Identifier: See EFPLMNwACT for coding. ) EFHPLMNwAcT (HPLMN selector with Access Technology)

de, or codes together with the respected access technology in priority order.

e: Transparent Optional

PLMN:M Country Code (MCC) followed by t e N ork Code (M

3

The HPLMN Selector with access technology data field shall contain the HPLMN co

Identifier: '6F62' Structur

SFI: '13'

File size: 5n (n ≥ 1) bytes Update activity: low

Bytes Description M/O Length

1 to 3 1st PLMN (highest priority) M 3 bytes

4 to 5 1st PLMN Access Technology Identifier M 2 bytes

6 to 8 2nd PLMN O 3 bytes

9 to 10 2nd PLMN Access Technology Identifier O 2 bytes

: :

(5n-4) to (5n-2) nth PLMN (lowest priority) O 3 bytes

(5n-1) to 5n nth PLMN Access Technology Identifier O 2 bytes

PLMN: Mobile Country Code (MCC) followed by the Mobile Network Code (MNC). Access Technology: The Access Technology of the HPLMN that the ME will

when searching for the HPLMN, in priority order. The first Access ology in the list has the highest priority. See EFPLMNwACT for coding.

4) EFFPLMN (Forbidden PLMNs)

This EF contains the coding for n Forbidden PLMNs (FPLMN). It is read by the ME as part of the USIM initialization procedure and indicates PLMNs which the UE shall not automatically attempt to access.

A PLMN is written to the EF if a network rejects a Location Update with the cause "PLMN not allowed". The ME shall manage the list as follows.

When n FPLMNs are held in the EF, and rejection of a further PLMN is received by the ME from the network, the ME shall modify the EF using the UPDATE command. This

assumeTechn

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new PLMN shall be stored in the nth position, and the existing list "shifted" causing the previous contents of the first position to be lost.

When less than n FPLMNs exist in the EF, storage additional FPLMN shall not cause any existing FPLMN to be lost.

Dependent upon procedures used to manage storage and deletion of FPLMNs in the EF, it is possible, when less than n FPLMNs exist in the EF, for 'FFFFFF' to occur in any position. The ME shall analyse all the EF for FP any position, and not regard 'FFFFFF' as a termination of valid data.

Identifier: '6F7B' Structure: transparent Mandatory

of an

LMNs in

SFI: '0D'

File size: n*3 bytes (n>3) Update activity: low

Bytes Description M/O Length

1 to 3 PLMN 1 M 3 bytes

4 to 6 PLMN 2 M 3 bytes

7 to 9 PLMN 3 M 3 bytes

10 to 12 PLMN 4 M 3 bytes

(3n-2) to 3n PLMN n O 3 bytes

CC) follo Network Code NC).

ance, usin the MNC and his d in PLMN 3 the contents is as follows:

Bytes 7-9: '42' 'F6' '18'.

torage for fewer than n PLMNs is required, the unused byt all be set to 'FF'. PLMN (HPLMN search period)

contains for the PLM

r: '6F31' Structure: transparent ory

PLMN: Mobile Country Code (M wed by the Mobile (M

For inst g 246 for the MCC and 81 for if t is store

If s es sh5) EFH

This EF the interval of time between searches H N

Identifie Mandat

SFI: '12'

File size: 1 byte Update activity: low

Bytes D /O escription M Length

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Feature Description HUAWEI UMTS Radio Access Network Chapter 2 UE Idle Mode Behavior

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Ti 1 me interval M 1 byte

Time interval: the time interval between two searches. The time interval is coded in integer multiples of n minutes. The range is from n minutes to a maximum value. The

r the HPLMN. The

s; :

utes (maximum value).

All other values shall be interpreted by the ME as a default period.

Only the service provider shall be able to set the timer value. The timer shall have a value between 6 m th a step size of 6 minutes. One value shall b ignated to in hall be made

II. Cell Selection Parameters

Parameters t value

value '00' indicates that no attempts shall be made to search foencoding is:

'00': No HPLMN search attempts; '01': n minutes;

'02': 2n minute :

'YZ': (16Y+Z)n min

inutes and 8 hours, wie des dicate that no periodic attempts s

Defaul

Qqualmin -18dB

Qrxlevmin -115dBm

UE_TXPWR_MAX_RACH 24dBm

III. Cell Reselection Parameters

Parameters Default value

Sintrasearch 10dB

Sin rsearchte 8dB

SsearchRAT m 4dB

Qoffset1s,n 0 dB

Qoffset2s,n 0 dB

Qhyst1s 2dB

Qhyst2s 4dB

Treselection 1s s

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Feature Description HUAWEI UMTS Radio Access Network Chapter 2 UE Idle Mode Behavior

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IV. Period Location Registration Parameter

12 = 6 minutes,

Period Location Updating T32

Period Routing Area Updating T3312 = 54minutes.

mple 2.6.3 Exa

None

2.7 Reference Information

1 PP, TS rvice accessibility" 2) 3GPP, TS 23.122 "NAS Functions related to Mobile Station (MS) in idle mode" 3 PP, TS "Mobile radio interface layer 3 spec tion Network

tocols - " 4) 3GPP, TS 25.304 "UE Procedures in Idle Mode and Procedures for Cell

selection nected Mode" 5 , TS Radio Resource Control (RRC)" 6) racteristics of the USIM Application"

) 3G 22.011 "Se

) 3G 24.008 ifica ; CorePro Stage 3

Re in Con) 3GPP

3GPP, TS 31.102 "Cha25.331 "