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Product Description
BTS3012AEV300R005
Issue 01
Date 2007-08-25
HUAWEI TECHNOLOGIES CO., LTD.
Huawei Technologies Co., Ltd. provides customers with comprehensive technical support and service. Please feel free to contact our local office or company headquarters.
Huawei Technologies Co., Ltd.
Address: Huawei Industrial BaseBantian, LonggangShenzhen 518129People's Republic of China
Website: http://www.huawei.com
Email: [email protected]
Copyright © Huawei Technologies Co., Ltd. 2007. 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.
NoticeThe 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 the warranty of any kind, express or implied.
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About This Document
AuthorPrepared by Xu QiaoLi Date 2007-08-25
Reviewed by Zhao Ming, Feng Baoshun, Xu Kai, Fan Zhichao, Li Zhanpeng, Zhang Wu
Date 2007-08-18
Approved by Feng Baoshun Date 2007-08-25
SummaryThis document consists of seven chapters and three appendixes. It is organized as follows:
Chapter Content
1 Introduction to BTS3012AE
This chapter introduces the position of the BTS3012AE in the network.
2 Key Benefits of the BTS3012AE
This chapter introduces the main features of the BTS3012AE.
3 System Architecture This chapter introduces the configuration and physical architecture of the BTS3012AE.
4 Services and Features This chapter introduces the main services and functions of the BTS3012AE.
5 Operation and Maintenance
This chapter introduces the operation and maintenance function of the BTS3012AE.
6 Reliability This chapter introduces the measures taken in reliability design of the BTS3012AE from the aspects of system, hardware and software.
7 Technical Specifications
This chapter lists the main performance specifications and engineering parameters of the BTS3012AE.
A Technical Standards The appendix lists the technical standards that the BTS3012AE conforms to.
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Chapter Content
B Glossary The appendix lists the glossary involved in this manual.
C Acronyms and Abbreviations
The appendix lists the acronyms and abbreviations involved in this manual.
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HistoryIssue Details Date Author Approved by
01 Initial commercial release 2007-08-25 Xu QiaoLi 2007-08-25
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Contents
1 Introduction to BTS3012AE............................................................................................7
2 Key Benefits of the BTS3012AE.....................................................................................9
3 System Architecture......................................................................................................12
4 Services and Features...................................................................................................21
5 Operation and Maintenance..........................................................................................23
6 Reliability........................................................................................................................26
7 Technical Specifications...............................................................................................29
Figure 1.1 Technical Specifications.................................................................................36
Figure 1.2 Glossary............................................................................................................39
Figure 1.3 Acronyms and Abbreviations.........................................................................41
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1 Introduction to BTS3012AE
1.1 Position of the BTS3012AE in the GSM NetworkHuawei double-transceiver Base Transceiver Station (BTS) family provides customized solutions for the GSM radio access network based on different requirements and network environments.
1.1 shows the position of the BTS3012AE in the GSM network.
Figure 1.1Position of the BTS3012AE in the GSM network
BSC
BSC/PCU
GSM NSS
BSS
MS
BTS3012AE
BTS3006C
BTS3002E
BTS3012AE
BTS3012
BTS3006C
BTS3002E
BTS3012
MS
MS
MSC
1.1 lists the application scenarios of the double-transceiver BTS family.
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Figure 1.1Application scenarios of the double-transceiver BTS family
Model Maximum Number of TRXs per Cabinet
Application Scenario
BTS3012 12 Used in highly populated areas with high traffic volume or in the areas where wide coverage is required
BTS3012AE 12 Used in cities, suburbs, and rural areas where high traffic volume and wide coverage are required, or in the areas where the site for an equipment room is hard to find or the construction cost of an equipment room is too high
BTS3006C 6 Used in cities and suburbs where medium traffic volume and wide coverage are required
BTS3002E 2 Used in indoor coverage, towns and suburbs where low traffic volume and wide outdoor coverage are required
1.2 Features of the BTS3012AEThe BTS3012AE is a double–transceiver outdoor macro BTS equipped with a heat exchanger. Using Double-Transceiver Units (DTRUs), a single BTS3012AE cabinet can support up to 12 TRXs. Having strong coverage capabilities, the BTS3012AE is intelligently designed with low power consumption, thus saving the operation expenditure. It can smoothly evolve into the GSM/EDGE Radio Access Network (GERAN).
Some of the features of the BTS3012AE are low construction cost, fast network deployment, and strong environment adaptability.
The BTS3012AE can work with indoor double-transceiver BTSs and mini double-transceiver BTSs to guarantee you a fast, economical, and efficient network deployment.
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2 Key Benefits of the BTS3012AE
2.1 Coverage CapabilityThe BTS3012AE has the following benefits in terms of coverage:
High receive sensitivityThe static sensitivity of the TCH/FS channel is –112.5 dBm (a typical value in normal temperature)
Power boost technology (PBT)The maximum transmit power of the DTRU can reach 100 W.
Configuration of up to six cells in one cabinetHybrid networking of multiple frequency bands is supported.
Transmit diversity and 4-way receive diversity
2.2 CapacityThe BTS3012AE has the following benefits in terms of capacity:
One BTS3012AE cabinet supports up to 12 TRXs. The maximum configuration of a site containing only one cabinet is S4/4/4.
The configuration of a site containing a BTS3012AE can reach up to S12/12/12 by means of cabinet groups. Each site supports 1–36 TRXs.
2.3 Networking CapabilityThe BTS3012AE has the following benefits in terms of the networking capability:
The BTS3012AE supports multiple transmission modes such as E1, T1, STM-1, microwave, and satellite transmission.
The BTS3012AE supports multiple topologies such as star, tree, chain, ring, and hybrid topologies.
The BTS3012AE supports the Flex Abis networking mode.
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2.4 Clock and SynchronizationThe BTS3012AE has the following benefits in terms of the clock and synchronization:
The BTS3012AE clock has four modes: fast pull-in, locked, holdover, and free run.
The Transmission, Timing, and Management Unit for DTRU (DTMU) of the BTS3012AE uses active/standby mode, which greatly improves the reliability of the clock.
The BTS3012AE can process the inputs of the external BITS clock.
2.5 AntennaThe BTS3012AE has the following benefits in terms of antenna:
Supports Remote Electric Tilt (RET) antennas Supports dual polarization antennas
This reduces the number of antennas in a cell. Supports Tower-Mounted Amplifiers (TMAs)
This improves the receive sensitivity.
2.6 Power Supply SystemThe BTS3012AE has the following benefits in terms of the power supply system:
Supports internal and external storage batteries− The BTS3012AE provides two storage battery cabins: –48 V 150 AH cabin
and –48 V 50 AH cabin. The BTS3012AE can be configured with a maximum of 200 AH storage batteries. Under S4/4/4 site configuration, the internal 200 AH can supply power for four hours when the traffic volume is normal.
− The external storage batteries can provide up to 600 AH power. Under S4/4/4 site configuration, the external storage batteries can supply power for more than four hours when the traffic volume is normal.
Supports 110 V AC dual-live power input, 220 V AC single-phase power input, and 220 V AC three-phase power input
Uses N+1 hot backup and startup at a low temperature Has powerful battery management and environment monitoring functions
2.7 Environment AdaptabilityThe BTS3012AE has excellent environment adaptability, which greatly reduces the BTS' requirements on environments.
The BTS3012AE has a sealed integrated structure. It complies with the International Protection standard (IP55) in terms of water prevention and dust prevention.
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The BTS3012AE can operate in a wide temperature range: from –20°C to +55°C (equipped with a Fan and Filter Unit).
The BTS3012AE has a powerful temperature control system, which enables it to adapt to various adverse environments. However, in severely polluted areas, such as chemical factories, the life of the fan filter unit will be severely affected.
The BTS3012AE has complete lightning protection measures. It is configured with built-in DELU and a power lightning protection unit.
The environment monitoring system of the BTS3012AE enables you to monitor the environments around the BTS at the remote end.
2.8 InstallationThe BTS3012AE is easy to install. It has the following benefits in terms of installation.
The BTS3012AE can be installed on a cement floor, building roof, or tower. All the external cables are introduced into the cabinet through the bottom of the
cabinet. A 200 mm high space is reserved for the cabling, which greatly facilitates the maintenance.
Field installation personnel only need to secure the cabinet and install the external cables.
The simple and fast installation of the hardware and software greatly reduces the installation time and facilitates fast network deployment.
2.9 Multiple Frequency Bands ApplicationsThe BTS3012AE supports the following frequency bands: 850 MHz, 900 MHz, 1800 MHz, and 1900 MHz. It can meet your requirements in any region.
2.10 Space ReservationThe reserved space houses the built-in E1, SDH, and micro-wave transmission equipment or other user equipment.
The reserved space provided by Huawei is of two configuration modes:
150 AH + 7 U 150 AH +50 AH +2 U
The technical operator can choose one configuration mode according to the requirement.
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3 System Architecture
3.1 Physical ArchitectureThe design of the BTS3012AE cabinet complies with the IEC60297standard. The dimensions of the BTS3012AE are as follows:
Height: 1,700 mm Width: 1,000 mm Depth: 936 mm
1.1 shows the cabinet layout.
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Figure 1.1BTS3012AE cabinet
The DFCU has the same functions as the DDPU and the DCOM, so you can choose either of the following schemes for the DAFU subrack of the BTS3012AE:
DDPU and DCOM DFCU
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1.2 shows the single cabinet in full configuration when the BTS3012AE is configured with the DDPU.
Figure 1.2Fully configured BTS3012AED
C P
DU
DTM
U
DAT
U
DC
SUD
CC
U
DTRU
DTRU
DTRU
DTRU
DTRU
DTRU
BAT -48 V 150 AH
Wire holderFAN
Air inlet
PSU
Cable in/outEMI
Wire holder
DTM
U
Wire holder
Air inlet
Tran
smis
sion
uni
t
BAT -48 V 50 AH
Air return
AC PDU
PSU
Air return
DPMU
PSUPSU
PSU PSUPSU PSU
DC
PD
U
DTM
U
DAT
U
DC
SUD
CC
U
DTRU
DTRU
DTRU
DTRU
DTRU
DTRU
BAT -48 V 150 AH
Wire holderFAN
Air inlet
PSU
Cable in/outEMI
Wire holder
DTM
U
Air inlet
Transmission unit
Air return
AC PDU
PSU
Air return
DPMU
PSUPSU
PSU PSUPSU PSU
Wire holder
(A) (B)
DMLU/DGLUDMLU/DGLUDELU 0 DELU 0
DELU 1/DGLU DELU 1/DGLU
DAFU
DAFU
DAFU
DAFU
DAFU
DAFU
DAFU
DAFU
DAFU
DAFU
DAFU
DAFU
1.2 (A) shows a fully configured BTS3012AE, with the combination 200 AH + 2 U.
(B) shows a fully configured BTS3012AE, with the combination of 150 AH + 7U.
1.2 lists the boards and modules in the BTS3012AE.
Figure 1.2Boards and modules
Board and Module Full Spelling
DTRU Double-Transceiver Unit
DTMU Transmission & Timing & Management Unit for DTRU BTS
DCCU Cable Connection Unit for DTRU BTS
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Board and Module Full Spelling
DCSU Combined Cabinet Signal Connection Unit for DTRU BTS
DAFU Antenna Front-end Unit for DTRU BTS
DDPU Dual-Duplexer Unit for DTRU BTS
DCOM Combining Unit for DTRU BTS
DFCU Filter Combiner Unit for DTRU BTS
DATU Antenna and TMA Control Unit for DTRU BTS
DELU E1 Signal Lightning-Protection Unit for DTRU BTS
DGLU Combined Group Signal Lightning-Protection Unit for DTRU
DMLU Monitor Signal Lightning-Protection Unit for DTRU BTS
PSU Power Supply Unit
DPMU Power and Environment Monitoring Unit for DTRU BTS
3.2 Functional ArchitectureThe BTS3012AE has a modular design. According to the function of the modules, it can be divided into the following subsystems:
Common subsystem Double-transceiver subsystem RF subsystem Power supply subsystem Monitoring subsystem
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The BTS3012AE integrates these modules into a cabinet to form a base transceiver station that fully complies with the outdoor protection standards and can operate independently. 1.1 lists the functional modules of the BTS3012AE.
Figure 1.1Functional modules of the BTS3012AE
Um
RFsubsystem
DAFU
DAFU
DTRU
Double-transceiversubsystem
CBUS/DBUS/TBUS
DTRUFiber
E1
Com bined cabinetor cabinet group 1
BITS
Common subsystemMonitor
DAFUDTRU
DATU
Optical transm iss ionequipm ent (optional)
E1
DTMU
Abis
AC
DPMUBattery
Power supply subsystem
Monitoringsubsys tem PSU
Cabinetgroup 2
NFCB
Sig
nal p
rote
ctio
nsu
bsys
tem
TMA TMA
TMA TMA
TMA TMA
1.1.1 Common SubsystemThe common subsystem consists of the BTS common subsystem and signal protection subsystem.
The BTS common subsystem performs the following functions:
Managing and controlling other subsystem and modules. Importing E1 signals Providing a clock for the BTS Controlling the Remote Electric Tilt (RET), and transmitting the signals from the
TMA to the BTS through the feeder cable
The signal protection subsystem performs the following functions:
Protecting E1 signals from lightning Protecting monitor signals from lightning Connecting cabinets to form a cabinet group Providing lightning protection for the signals between cabinet groups when their
distance is 2–5 meters
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1.1.1 lists the boards in the common subsystem and their functions.
Figure 1.3Board in the common subsystem and their functions
Common Subsystem
Board Function
BTS common subsystem
DTMU Using active/standby mode Supporting four E1 inputs by default and can provide
eight E1 inputs. Providing a 10 Mbit/s Ethernet port for terminal
maintenance Supporting eight Boolean alarm inputs and four
extended Boolean control signal outputs Supporting the external GPS and BITS synchronization
clock input
DCCU Outputting and inputting signals
DCSU Forwarding the cabinet group signals from the common subsystem to the DSCB
DATU Transmitting the remote electrical tilt unit (RET) control signals
Feeding the TMA Reporting alarms related to the control of the RET
antenna and monitoring the feed current.
Signal protection subsystem
DMLU Providing lighting protection for eight external Boolean value inputs
Providing a 2-route 485 serial control bus port
DELU Providing lighting protection for 4-route E1 signals
DGLU Providing lighting protection for the signals between BTS3012AE cabinet groups when their distance is 2 –5 meters
3.2.2 Double-Transceiver SubsystemThe main functions of the double-transceiver subsystem are as follows:
Baseband signals processing RF receive processing and transmit processing Power amplification Transmit diversity and 4-way receive diversity PBT
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3.2.2 lists the boards in the double-transceiver subsystem and their functions.
Figure 1.4Boards in the double-transceiver subsystem and their functions
Board Function
DTRU Processing the RF and baseband signals of two carriers Processing baseband frequency hopping and RF hopping Supporting enhanced functions such as PBT, transmit diversity, and 4-
way receive diversity
3.2.3 RF SubsystemThe RF subsystem comprises:
RF antenna subsystem DAFU subsystem RF transceiver subsystem
3.2.3 lists the components of each part.
Figure 1.5RF subsystem components and their functions
RF Subsystem
Board and Module
Function
Antenna subsystem
Antenna Transmitting and receives signals
Feeder Connecting the antenna to the ANTA or ANTB port on the DAFU
TMA Amplifying signals
DAFU subsystem
DDPU Sending the multiple channels of the RF signals from the transceiver to the antenna through the duplexer
Amplifying the received signals from the antenna and divides the signals into four parts and then sending them to the transceiver
DFCU Sends the multiple channels of RF Tx signals from the DTRU transmitter to the antenna through the duplexer after combination.
Sends the received signals from the antenna to the duplexer and to the low noise amplifier and divides the signals into several routes and then sends them to the receivers of the DTRUs.
Combines the four routes of signals into one route, auto detects the frequencies of the input signals and performs automatic tuning.
DCOM Combining two routes of signals into one route
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RF Subsystem
Board and Module
Function
RF transceiver subsystem
DTRU (RF) Transmitting signals Receiving signals Combining frequency Performing loopback test Amplifying power Outputting the power individually Outputting the combination power
3.2.4 Power Supply SubsystemThe power supply subsystem consists of the PSU, DPMU, and storage batteries. It performs the following functions:
Converting the external power input into –48 V DC power Providing –48 V DC power for the entire BTS3012AE Charging and discharging the storage batteries
3.2.4 lists the boards of the power supply subsystem and their functions.
Figure 1.6Boards of the power supply subsystem and their functions
Board Function
DPMU Monitoring the PSU, storage batteries, and the internal environment of the cabinet
Inputting 6-route external Boolean values and outputting 2-route Boolean values
PSU Converting the external power into –48 V DC, and then supplying the –48 V DC power for each BTS3012AE module
Storage battery
Supplying power for the BTS3012AE when the external power supply fails
3.2.5 Monitoring SubsystemThe functions of the monitoring subsystem are as follows:
Managing and monitoring the internal environment of the cabinet, the power supply system, and the charging and discharging of the storage batteries, and reporting the monitoring results to the DTMU
Collecting the environment parameters such as the temperature, humidity, smoke, and water immersion sent from the sensors, and then reporting the result to the DTMU. The DTMU processes the reported results and then sends the results to the OMC.
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Ensuring that the BTS3102AE has an optimum temperature. The fans dissipate the heat for the BTS3012AE. When the temperature exceeds the threshold, the system generates alarms.
3.3 System ConfigurationThe system configuration is as follows:
A single BTS3012AE cabinet under full configuration has a maximum of 12 TRXs, that is, 6 DTRUs.
The BTS3012AE supports a cabinet group of up to three cabinets.
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4 Services and Features
4.1 Services4.1 lists the services that the BTS3012AE provides.
Figure 1.7BTS3012AE service list
Service Abbreviation Description
Speech service
EFR Enhanced full rate speech service
FR Full rate speech service
HR Half rate speech service
AMR Adaptive multi-rate
Data service F9.6 9.6 kbit/s full rate data service
F4.8 4.8 kbit/s full rate data service
F2.4 2.4 kbit/s full rate data service
Packet service
GPRS CS1/CS2/CS3/CS4 packet service
EDGE MCS1–MCS9 EGPRS packet service
4.2 FeaturesThe special features of the BTS3012AE with respect to the following aspects are described here.
EDGE The BTS3012AE supports system information broadcast and resource
indication, which are compatible with the GSM/EDGE R99. The BTS3012AE supports the GSM/EDGE LAPDm protocol.
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Handover The BTS3012AE supports synchronous and asynchronous handovers. The BTS3012AE supports dualband handover.
Frequency Hopping The BTS3012AE supports baseband frequency hopping. The BTS3012AE supports RF hopping. The BTS3012AE supports antenna hopping. The BTS3012AE supports the dynamic MAIO.
Encryption The BTS3012AE has the A5/0 non-encryption function. The BTS3012 provides the encryption and decryption functions of A5/1, A5/2,
and A5/3.
Power Control The BTS3012AE can support static power control. The BTS3012AE can support dynamic power control.
Detection The BTS3012AE can detect random access collision. The BTS3012AE can detect whether the main boards and modules are in
position. The BTS3012AE can detect and report the output power of the DTRU module.
Extended CellWith the extended cell function, the BTS3012AE can cover an area of up to 120 km.
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5 Operation and Maintenance
5.1 O&M Subsystem5.1.1 Overview of the O&M Subsystem
You can carry out two types of maintenance on the BTS3012AE:
Terminal maintenance Remote maintenance
1.1 shows the topology of the O&M subsystem.
Figure 1.1Topology of the O&M subsystem
Site MaintenanceTerminal System
MMI
MMI
BTS
BTS
BSC
Abis
Abis
OMCServer
Hub
Remote SiteMaintenance System
Site MaintenanceTerminal System
5.1.2 Terminal MaintenanceAs shown in 1.1, terminal maintenance is carried out through a PC. The PC is connected to the BTS3012AE through an Ethernet cable.
By carrying out terminal maintenance, you can operate and maintain sites, cells, and TRXs.
5.1.3 Remote MaintenanceAs shown in 1.1, remote maintenance is carried out through a PC. The PC forms a
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network with the OMC, BSC, and BTS.
Remote maintenance is carried out through a Graphic User Interface (GUI) and topological view. You can see the name, type, location, number, and running status of each NE through the GUI interface.
You can view the detailed performance data, alarm data, and configuration data of an NE.
You can also operate or maintain an NE through the topological view.
5.2 O&M FunctionsThe BTS3012AE O&M system supports powerful O&M functions such as:
Security Management Alarm Management Data Configuration Maintenance Management
5.2.1 Security ManagementThe BTS3012AE authorizes maintenance engineers with hierarchical operation rights to ensure the system security. At the same time, it prompts the possible outcome of dangerous operations.
5.2.2 Alarm ManagementThe alarm management function of the BTS3012AE can detect and report equipment faults and abnormal functioning in real time.
With this function, the BTS3012AE can collect, clear, query, handle, save, explain, prompt, filter, and analyze alarms.
In addition, the online help and layered alarm filtering function help you to quickly locate faults and carry out fault recovery measures.
5.2.3 Data ConfigurationThe O&M subsystem of the BTS3012AE allows the addition, deletion, modification, and consistency check of the BTS data. It supports both dynamic and static data configurations.
5.2.4 Maintenance ManagementThe O&M subsystem of the BTS3012AE provides the following maintenance functions:
Downloading software to boards or modules, or starting and initializing boards or modules
Recording the interface tracing messages and running status of the BTS through logs
Implementing in-position tests on boards Testing the Abis link of the DTRU, testing channels, and self checking the site,
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cell, carrier, and board Providing backup management for the active/standby DTMU
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6 Reliability
6.1 System ReliabilityThe BTS3012AE is designed after an overall analysis on system reliability. The BTS3012AE enhances its system reliability through the following methods:
Active/standby mode Load sharing Redundant configuration Optimized fault detection of boards and system Optimized fault isolation
Redundancy DesignThe BTS3012AE has a redundancy design. The key clock bus, control bus, data bus, and the DTMU modules use 1+1 backup mode. The BTS3012AE also supports the transceiver (TRX) mutual aid.
System MonitoringThe BTS3012AE can automatically detect and diagnose faults in the hardware or software and report them through alarms. It can also detect environmental status and report abnormalities in time.
6.2 Hardware ReliabilityThe BTS3012AE enhances hardware reliability through the following methods:
Prevention Against Mistakenly Inserted Boards Redundancy Design of the FAN Box Protection Against Excessive Rise in Temperature of the DTRU Reliability Design for Power Supply
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Prevention Against Mistakenly Inserted BoardsWhen a functional board is inserted into a wrong slot, it does not come in full contact with the backplane. This prevents the equipment from being damaged.
Redundancy Design of the FAN BoxThe fan works in N+1 redundancy backup mode. If a fan is faulty, the other fans run at full speed. Under normal temperature, this design can meet the heat dissipation requirement.
Protection Against Excessive Rise in Temperature of the DTRUWhen the temperature around the last level power amplifier is too high, the power amplifier reports the excessive rise in temperature through an alarm, and then enters into the automatic protection state.
Reliability Design for Power SupplyThe power supply system of the BTS3012AE has the following features in terms of reliability design:
The power supply system has the power environment monitoring system, which performs the following functions:− Monitoring the power distribution of the AC/DC− Managing the charging and discharging of the storage batteries− Monitoring the cabinet environment− Monitoring the storage battery cabinet environment− Monitoring the extension cabinet environment− Monitoring the input and output of extended alarms
When the external power supply fails, the internal storage batteries of the BTS3012AE can supply power for several hours. An alarm about the failure of the external power supply is sent to the OMC to prompt for proper handling.
The BTS3012AE uses a distributed power supply. The DC/DC power modules operate in N+1 redundancy mode. When a module fails, an alarm is sent to the OMC. You can easily replace the faulty module because the DC/DC is hot swappable.
The power supply has a lightning protection function and a function for protection against voltage variation.
The BTS3012AE provides power failure protection for programs and data. The boards of the BTS3012AE provide protection against excessive voltage and
current. The boards of the BTS3012AE provide protection against reverse-polarity
connection.
6.3 Software ReliabilityThe software reliability of the BTS3012AE is reflected in its powerful error tolerance capability. The entire system is not corrupted when the software fails. That is, the
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system has self-healing capability. Error tolerance of the BTS3012AE is shown in the following aspects.
Regular Check on Key ResourcesSeizure check is conducted on various software resources in the system. The check mechanism can ensure the release of suspended resources and the output of the related logs and alarms.
Task MonitoringWhen the software is active, the task monitoring function can monitor any possible fault in the software or hardware. In addition, detected faults can be reported. Task status and system abnormalities can also be monitored.
Data CheckThe system can perform regular or event-driven checks on data consistency, restore the data consistency selectively or preferably, and output related logs and alarms.
Saving Operation Log InformationThe system records user operations within a certain period and saves the recorded information to the system operation logs. Operation logs can be used to locate errors or exceptions because of incorrect operations so that the system can be restored to the normal state.
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7 Technical Specifications
7.1 Radio Specifications7.1.1 Working Frequency Bands
7.1.1 lists the working frequency bands of the BTS3012AE.
Figure 1.1BTS3012AE working frequency bands
Frequency Band Parameter Specifications
900 MHz Receive band 876–915 MHz
Transmit band 921–960 MHz
Space between carriers 200 kHz
1800 MHz Receive band 1710–1785 MHz
Transmit band 1805–1880 MHz
Space between carriers 200 kHz
850 MHz Receive band 824–849 MHz
Transmit band 869–894 MHz
Space between carriers 200 kHz
1900 MHz Receive band 1850–1910 MHz
Transmit band 1930–1990 MHz
Space between carriers 200 kHz
7.1.2 Transmit Specifications7.1.2 lists the nominal output power of the DTRU.
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Figure 1.2Nominal output power of the DTRU
Modulation Scheme
Output Power (with the Independent transmit)
Mode 1 Mode 2
Output Power (with the PBT Function)
GMSK 40W (45.00dBm) 60W (46.78dBm) 100W (50.00dBm)
8PSK 40W (45.00dBm) 40W (45.00dBm) 60W (46.78dBm)
a: GMSK = Gaussian Minimum Shift Keying
b: PSK = Phase Shift Keying
Mode 1 represents that the output power is 40 W and Mode 2 represents that the output power is 60 W.
7.1.3 Receive Specifications7.1.3 lists the static receive sensitivity of the BTS3012AE.
Figure 1.3BTS3012AE receive sensitivity
Channel Type Receive Sensitivity
TCH/FS –112.5 dBm (a typical value in normal temperature)
Others Better than the requirements specified in the 3GPP TS 05.05 protocols
7.2 Engineering Specifications7.2.1 Dimensions
7.2.1 lists the mechanical dimensions of the BTS3012AE.
Figure 1.4Mechanical dimensions of the BTS3012AE
Item Width (mm) Depth (mm) Height (mm)
Cabinet 1,000 936 1,700
Cabinet + cabinet base 1,000 936 1,900
7.2.2 Weight7.2.2 lists the weight of the BTS3012AE.
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Figure 1.5Weight of the BTS3012AE
DAFU Subrack Configuration Weight (kg)
The DDPU is configured
Empty cabinet (excluding the FFU or internal subracks)
170
Assembly cabinet (including the FFU and internal subracks)
325
Full configuration (no storage batteries, configured with a front door and all the boards)
400
The DFCU is configured
Empty cabinet (excluding the FFU or internal subracks)
170
Assembly cabinet (including the FFU and internal subracks)
325
Full configuration (no storage batteries, configured with a front door and all the boards)
430
7.2.3 Power SupplyThe BTS3012AE uses a mature EPS210-4830A power supply system.
7.2.3 lists the specifications of the input power.
Figure 1.6Specifications for the BTS3012AE power supply.
Rated Voltage(V AC) Rated Power Power Distribution Type
196–240 10% (phase voltage)
45–65Hz 220 V AC single-phase input
196–240 + 10% (phase voltage)
45–65Hz 220 V AC 3-phase power input
196–240 + 10% (line voltage) 45–65Hz 110 V AC dual-live input
7.2.3 lists the types of voltage supported by the BTS3012AE.
Figure 1.7Voltage types supported by the BTS3012AE
Rated Voltage(V AC) Rated Power Power Distribution Type
220 (phase voltage)
230 (phase voltage)
240 (phase voltage)
50 Hz or 60 Hz 220 V AC single-phase input
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Rated Voltage(V AC) Rated Power Power Distribution Type
380/220 (line voltage/phase voltage)
400/230 (line voltage/phase voltage)
415/240 (line voltage/phase voltage)
50 Hz or 60 Hz 220 V AC3-phase power input
220/110 (line voltage/phase voltage)
230/115 (line voltage/phase voltage)
240/120(line voltage/phase voltage)
200/115 (line voltage/phase voltage)
208/120 (line voltage/phase voltage)
216/125 (line voltage/phase voltage)
220/127 (line voltage/phase voltage)
50 Hz or 60 Hz 110 V AC dual-live input
7.2.4 Power Consumption7.2.4 lists the power consumption of the BTS3012AE under typical configuration.
Figure 1.8Power consumption of the BTS3012AE
Power Consumption Condition Value
Typical value Normal temperature, 900 MHz 40 W optimized TRX, S4/4/4 full configuration, FFU out of work, AC power consumption in mean traffic volume
1300 W
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7.2.5 Transmission
Transmission Interfaces7.2.5 lists the transmission interfaces of the BTS3012AE.
Figure 1.1BTS3012AE transmission interfaces
Interface Type Quantity Rate Standard
E1 4 pairs 2 Mbit/s ETS 300 420ITU G.703/G.704
STM-1 2 pairs 155 Mbit/s ANSI T1.105-1995ITU I.432.2 G.703ITU G.957
T1 4 pairs 1.5 Mbit/s ANSI-G.703/G.704
Other External Interfaces7.2.5 lists the other external interfaces of the BTS3012AE.
Figure 1.1Other external interfaces of the BTS3012AE
Interface Function
Clock interface Used to connect the external clock, such as the BITS, which provides a high precision clock at 2.048 MHz
Power and grounding interface
220 V AC power input interface
-
110 V AC power input interface
-
Grounding interface
-
Monitoring interface
External alarm input
Used to input 8-route Boolean values
Antenna feeder interface Used to connect the feeder
7.2.6 Operating Environmentt7.2.6shows the requirements for the operating environment of the BTS3012AE.
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Figure 1.2Requirements for the operating environment of the BTS3012AE
Item Range
Temperature –20°C to +55°C
Humidity 5% RH to 95% RH
7.2.7 EMCThe BTS3012AE fulfils the Electromagnetic Compatibility (EMC) requirements. It complies with the following standards:
R&TTE Directive 99/5/EC ETSI EN 301 489-1/8
7.2.8 Acoustic NoiseThe BTS3012AE complies with GR-63-CORE-2003 standard in terms of noise:
7.2.9 Storage EnvironmentThe BTS3012AE complies with the following standard in terms of the storage environment:
ETS class 1.2 Weather Protected, Not Temperature Controlled Storage Locations in ETS 300 019-1-1.
7.2.10 Transportation EnvironmentThe BTS3012AE complies with the following standard in terms of the transportation environment:
ETS class 2.3 Public Transportation in ETS 300 019-1-2.
7.2.11 Equipment ProtectionThe BTS3012AE complies with the following standards in terms of equipment protection:
The BTS3012AE cabinet fulfils the requirements of IEC 529. The protection level reaches IP55.
The fan filter unit has functions such as waterproof, dustproof, and anti-mildew. The waterproof function meets the IP54 standard, the dustproof function meets the IEC60529 standard, and the anti-mildew function meets the IEC 68-2-10 standard.
7.2.12 Anti-Seismic PerformanceThe BTS3012AE complies with the following standards in terms of anti-seismic performance:
IEC 60068-2-57 (1999-11) Environmental testing –Part 2-57: Tests –Test Ff: Vibration –Time-history method.
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Figure 1.1Technical Specifications
ITU and ETSI StandardsHuawei-developed BTS is in compliance with GSM recommended phase 2+ of ETSI, as shown below:
GSM 01.02(ETR099):"general description of a GSM Public Land Mobile Network (PLMN)"
GSM 04.04 (ETS 300 553):"European digital cellular Telecommunications System (phase 2); layer 1 general requirements"
GSM 04.05 (ETS 300 554):"European digital cellular Telecommunications System (phase 2); Data Link (DL) layer general aspects"
GSM 04.06 (ETS 300 555):"European digital cellular Telecommunications System (phase 2); Mobile Station - Base Station System (MS - BSS) interface Data Link (DL) layer specification"
GSM04.08 (ETS300557):"digital cellular telecommunications system (phase2); mobile radio interface layer 3 specification"
GSM05.01 (ETS300573):"European digital cellular telecommunications system (phase2); physical layer on the radio path general description"
GSM 05.02(ETS 300 574):"multiplexing and multiple access on the radio path" GSM05.03 (ETS300575):"digital cellular telecommunications system (phase2);
channel coding" GSM05.04 (ETS300576):"European digital cellular telecommunications system
(phase2); Modulation" GSM05.05 (ETS300577):"digital cellular telecommunications system (phase2);
radio transmission and reception" GSM05.08 (ETS300578):"digital cellular telecommunications system (phase2);
radio subsystem link control" GSM05.10 (ETS300579):"digital cellular telecommunications system (phase2);
radio subsystem synchronization" GSM11.10 (ETS300607):"digital cellular telecommunications system (phase2);
Mobile Station (MS) conformity specification" GSM11.11 (ETS300608):"digital cellular telecommunications system (phase2);
specification of the Subscriber Identity Module - Mobile Equipment (SIM - ME) interface"
GSM 08.58(ETS 300 596):"Base Station Controller-Base Transceiver Station (BSC-BTS) interface layer 3 specification"
GSM 08.51 (ETS 300 592):"European digital cellular Telecommunications System (phase 2); Base Station Controller - Base Transceiver Station (BSC -
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BTS) interface general aspects" GSM 08.52 (ETS 300 593):"European digital cellular Telecommunications
System (phase 2); Base Station Controller - Base Transceiver Station (BSC - BTS) interface interface principles"
GSM 08.56 (ETS 300 595):"European digital cellular Telecommunications System (phase 2); Base Station Controller - Base Transceiver Station (BSC - BTS) interface layer 2 specification"
A.2 Abis Interface and Um Interface Standards GSM 08.51 (ETS 300 592):"European digital cellular Telecommunications
System (phase 2); Base Station Controller - Base Transceiver Station (BSC - BTS) interface general aspects"
GSM 08.52 (ETS 300 593):"European digital cellular Telecommunications System (phase 2); Base Station Controller - Base Transceiver Station (BSC - BTS) interface interface principles"
GSM 08.56 (ETS 300 595):"European digital cellular Telecommunications System (phase 2); Base Station Controller - Base Transceiver Station (BSC - BTS) interface layer 2 specification"
GSM 04.22 (ETS 300 563):"European digital cellular Telecommunications System (phase 2); Radio Link Protocol (RLP) for data and telematic services on the Mobile Station - Base Station System (MS - BSS) interface and the Base Station System - Mobile-services Switching Centre (BSS - MSC) interface"
A.3 Environment Adaptability StandardsBTS3012 Specifications are as follows:
Low temperature working index: IEC 68 2-1. High temperature working index: IEC 68 2-2. Temperature cycle operation test: IEC 68 2-14. Moist heat working index: IEC 68-2-30. Working jiggling index: ETS 300-019-3. Shockproof index: Adopt earthquake testing method stipulated by the ministry of
posts and telecommunications. Shockproof grade is grade 8~9 earthquake intensity.
Moldproof index: IDT IEC 68-2-10. Salt spray proof index: IDT IEC 68-2-11.
A.4 EMC Standards ETSI EN 301 489-1 V1.3.1 (2001-07): "Electromagnetic compatibility and Radio
spectrum Matters (ERM); Electro Magnetic Compatibility (EMC) standard for radio equipment and services; part 1: common technical requirements"
ETSI EN 301 489-8 V1.1.1 (2000-09): "Electromagnetic compatibility and Radio spectrum Matters (ERM); Electro Magnetic Compatibility (EMC) standard for
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radio equipment and services; part 9: specific conditions for GSM Base Station" ETS 300 342-3: (1999-10): "Electromagnetic compatibility and Radio spectrum
Matters (ERM); Electro Magnetic Compatibility (EMC) for European digital cellular Telecommunications System (GSM 900 MHz and DCS 1800 MHz); part 3: Base station radio and ancillary equipment and repeaters meeting phase 2 GSM requirements"
A.5 Lightning Protection Standards ETS 300-253. IEC-1312. ITU-T K.27 (1996) bonding configurations and earthing inside a
telecommunication building. ITU-T K.11 principles of protection against overvoltage and overcurrents. ITU-T K.46 protection of telecommunication lines using metallic symmetric
conductors against lightning induced surges. ITU-T K.20 resistibility of telecommunications equipment installed in a
telecommunications centre to overvoltages and overcurrents.
A.6 Safety Standards EN60950. IEC60950.
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Figure 1.2Glossary
A
AntennaA device which radiates and/or receives radio signals. When working as a transmitter, it converts high frequency current to electromagnetic waves; when working as a receiver, it coverts electromagnetic waves to high frequency current.
B
Baseband Baseband is a form of modulation in which the information is applied directly onto the physical transmission medium.
BSS In GSM the Base Station System is a term given to a BSC (Base Station Controller) and the BTS (Base Transceiver Station) associated with it. The number of BTS associated with a BSC is dependent on the manufacturer. Although not mandatory, through interpretation of the Abis interface standard BTS and BSC employed within a BSS will always be supplied by the same manufacturer.The BSS is the physical equipment used to give radio coverage to a determined geographical zone called a cell. Functionally, a BSS is subdivided into BSC and BTS.
Base Transceiver Station
A Base Transceiver Station terminates the radio interface. It allows transmission of traffic and signaling across the air interface. The BTS includes the baseband processing, radio equipment, and the antenna.
C
CellRadio network object that can be uniquely identified by a User Equipment from a (cell) identification that is broadcasted over a geographical area from one UTRAN Access Point. A Cell is either FDD or TDD mode.
Carrier A sine wave, whose bandwidth is much higher than the bandwidth of a signal and, which can be identified by amplitude, frequency, and phase.
H
Handover The transfer of a user’s connection from one radio channel to another (can be the same or different cell).
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R
Receive diversityThe most common type of diversity, where a mobile device uses two physically separate antennas to combine signals from the two antennas to reduce the impact of spatial variations in signal strength and thus increase the average data rate available - sometimes dramatically.
T
TMA A Tower Mounted Amplifier (TMA) is a lower noise amplifier installed close to the antenna.
TRX A transmitter and receiver housed together in a single unit and having some circuits in common, often for portable or mobile use.
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Figure 1.3Acronyms and Abbreviations
B
BSC Base Station Controller
BSS Base Station System
BTS Base Transceiver Station
D
DAFU Antenna Front-end Unit for DTRU BTS
DATU Antenna and TMA control Card for DTRU BTS
DCCU Cable Connection Unit for DTRU BTS
DCOM Combining unit for DTRU BTS
DCSU Combined cabinet Signal connection Unit for DTRU BTS
DCU Direct Cooling Unit
DDPU Dual-Duplexer Unit for DTRU BTS
DEMU Environment Monitoring Unit for DTRU BTS
DELC E1 Signal Lightning-Protection Card for DTRU BTS
DMLC Monitor signal Lightning-protection Card for DTRU BTS
DSAC Signal Access Card for DTRU BTS
DTRU Double-Transceiver unit
DTMU Transmission & Timing & Management Unit for DTRU BTS
E
EDGE Enhanced Data rates for GSM Evolution
EFR Enhanced Full Rate
F
FACCH Fast ACCH
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FACCH/F Fast Associated Control Channel/Full rate
FCCH Frequency Correction Channel
FFU Fan and Filter Unit
G
GERAN GSM/EDGE Radio Access Network
GPRS General Packet Radio Service
GSM Global System for Mobile communications
I
IEC International Electrotechnical Commission
M
MS Mobile Station
MSC Mobile services Switching Centre, Mobile Switching Centre
O
OMC Operations & Maintenance centre
P
PBT Power Boost Technology
T
TCH Traffic Channel
TCH/FS Full rate Speech TCH
TRX Transceiver unit
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