ETSI GSM 08 52-1993 European Digital Cellular Telecommunication System (Phase 2) Base Station Controller (BSC) to Base Transceiver Station (BTS) Interface Principles《欧洲数字蜂窝通信系统(第2阶_1.pdf
《ETSI GSM 08 52-1993 European Digital Cellular Telecommunication System (Phase 2) Base Station Controller (BSC) to Base Transceiver Station (BTS) Interface Principles《欧洲数字蜂窝通信系统(第2阶_1.pdf》由会员分享,可在线阅读,更多相关《ETSI GSM 08 52-1993 European Digital Cellular Telecommunication System (Phase 2) Base Station Controller (BSC) to Base Transceiver Station (BTS) Interface Principles《欧洲数字蜂窝通信系统(第2阶_1.pdf(16页珍藏版)》请在麦多课文档分享上搜索。
1、m 3404583 00807b3 430 W , Released: 1 July 1993 GSM 08.52 Version: 4.0.1 Date: 1 July, 1993 Work Item No: Key words: European digital cellular telecommunication system (phase 2); Base Station Controller (BSC) to Base Transceiver Station (BTS) Interface Principles ETSI European Telecommunications Sta
2、ndards Institute ETSI Secretariat: Route des Lucioles, F-O692 1 Sophia Antipolis Cedex . France TP. + 33 92 94 42 O0 TF. + 33 93 65 47 16 Tx. 47 O0 40 F This is an unpublished work the copyright in which vests in the European Telecommunications Standards Institute. All rights reserved. The informati
3、on contained herein is the property of ETSI and no part may be reproduced or used except as authorised by contract or other written permission. The copyright and the foregoing restriction on reproduction and use extend to all media in which the information may be embodied. 3404583 O080764 377 D Page
4、 3 GSM 08.52 . version 4.0.1 : July 1993 CONTENTS 1 . 2 . 3 . 4 . 6 . SCOPE 5 DEFINITIONS . 5 2.1 . Base Station System. BSS 5 2.2. Base Station Controller. BSC . 5 2.3. Base Transceiver Station. BTS 5 2.4. Cell . 5 2.5. Transceiver. TRX 5 2.6. Base Control Function. BCF 5 GENERAL 6 FUNCTIONAL DIVIS
5、ION BETWEEN BSC AND BTS . 7 4.1. General 7 4.2. Terrestrial Channel Management . 7 4.3. Radio Channel Management 7 4.3.1 . Channel Configuration Management . 7 4.3.2. SDCCH (stand alone DCCH) and TCH Management 7 4.3.2.1 . Frequency hopping management 7 4.3.2.2. Channel selection. link supervision a
6、nd channel release . 7 4.3.2.3. Power Control . 8 4.3.2.4. Idle channel observation . 8 4.3.3. BCCHKCCH Management 8 4.3.4. Random Access 8 4.3.5. Channel Coding/Decoding . 8 4.3.6. Transcoding/Rate Adaption . 8 4.3.7. Timing advance . 9 4.3.8. Radio Resource Indication . 9 4.3.9. Measurements 9 4.3
7、.1 O . LAPDm functions (Layer 2) 9 4.3.1 1 . Paging . 9 4.3.12. Handover . 10 4.3.1 3 . Encryption . 10 4.3.14. Mobility Management and Call Control . 10 5.1 . Transcodingrnate Adaption in BTS . 13 5.2. Transcoding/Rate Adaption outside BTS . 13 INTERFACE STRUCTURES . 13 6.1 . Communication Channels
8、 . 13 6.2. Signalling Links . 14 6.3. Signalling Model . 16 Previous page is blank - 3404583 00807b5 203 e Page 5 GSM 08.52 - version 4.0.1 : July 1993 1. SCOPE The use and general aspects of the A-bis interface are given in Technical Specification GSM 08.51. This specification gives the principle b
9、asis for the rest of the specifications specifying the interface between the Base Station Controller, BSC, and the Base Transceiver Station, BTS, with its transceivers, TRX. These components together form the Base Station System, BSS. (The interface between MSC and the BSS is specified in Technical
10、Specifications GSM 08.01 - 08.20.) The intention with this interface is to get a unified way of connecting remotely located BTSsflRXs to a BSC allowing for the interconnection of BSCs and BTSsTTRXs from different manufacturers. In order to keep the BTS as simple as possible, BTS contains only those
11、functions which have to recide close to the radio interface. 2. DEFINITIONS 2.1. Base Station System, BSS See TS GSM 01.04. 2.2. Base Station Controller, BSC See TS GSM 01.04. 2.3. Base Transceiver Station, BTS See TS GSM 01.04. The BTS can consist of one or more TRXs with or without common control
12、equipment. 2.4. Cell See TS GSM 01.04. 2.5. Transceiver, TRX The Transceiver, TRX, in the GSM PLMN is the functional entity which supports the 8 basic radio channels of the same TDMA-frame. 2.6. Base Control Function, BCF A functional entity which handles common control functions within a BTS, e.g.
13、frequency hopping sequencies etc. At a multi BTS site, one of the BCFs can also be choosen to perform functions common to the site (e.g. external alarms, power supply, time base). Previous page is blank 3404583 00807bb L4T A-bis I 1 A-bis I I Page 6 GSM 08.52 - version 4.0.1: July 1993 r TRX BTS1 BC
14、F - TRX TRX BTS2 TRX BCF _-_ _-_ -_ t 3. GENERAL BSC * Technical Specifications GSM 08.01 - 08.20 specify the .mctional split and interface between MSC and the Base Station System, BSS, the A- interface. The BSS can be further subdivided into one BSC controlling one or more BTSs, each consisting of
15、one or more TRXs. The interface treated by this specification is the interface between a ESC and a BTS. It is denoted the A-bis-interface. The A-bis-interface is capable of supporting three different internal BTS configurations: - one single TRX, - - Figure 3.1 shows some possible configurations. a
16、collection of TRXs where all are served by a common physical connection, a collection of TRXs, each served by its own physical connection. BSS I I A-bis I I I I I Lf 1 I il MSC I I BTS3 Figure 3.1108.52. BSS Subdivision and Interfaces. . W 3404583 O080767 O86 Page 7 GSM 08.52 - version 4.0.1 : July
17、1993 This specification is based on the use of digital transmission system interfaces, either at 2048 kbit/s or at 64 kbit/s. furthermore, the use of a subrate of 16 kbit/s is supported for coded speech or rate adapted data. This interface will support the transcoder positioned either inside or outs
18、ide BTS. In the latter case, remote control (synchronisation) of the transcoder is used. 4. FUNCTIONAL DIVISION BETWEEN BSC AND BTS 4.1. General In Technical Specification GSM 08.02 the functional division between MSC and BSS is described. This section describes the further subdivision of functions
19、between BSC and BTSiTRX required for the A-bis interface. A summary can be found in Table 4.1. Some general requirements on the functionality of the A-bis interface are also specified. 4.2. Terrestrial Channel Management There is a unique mapping from traffic channels on the radio path to the terres
20、trial traffic channels. BSC makes the choice of radio channel and thereby also of the terrestrial channel for a call, 4.3. Radio Channel Management 4.3.1. Channel Configuration Management The channel configuration is controlled between the BSC and OMC. Current configuration is downloaded from OMC to
21、 BSC which then controls the use of the radio channels (TDMA time slots for BCCHCCCH, TCHs, SDCCHs etcl. 4.3.2. SDCCH (stand alone DCCH) and TCH Management 4.3.2.1. Frequency hopping management The hopping sequences for each BTS (cell) is downloaded from OMC to BSC. It is then the responsibility of
22、BSC to download this information to each BTS and also to send the COireSpOndinQ BCCH information to be transmitted in the BCCH time slots. 4.3.2.2. Channel selection, link supervision and channel release These functions are controlled by BSC. For channel selection BSC has to have information on bloc
23、ked radio channels and also on interference level on idle channels. In the assignment messages to MS (Immediate Assign, Assign Command and Handover Command), a Starting Time parameter is included. This starting time is based on the frame number on the (new) BTS. Before sending the assign message to
24、MS, BSC has to be informed on the current frame number in BTS. When assigning a channel, BSC shall inform BTS on relevant parameters, e.g. channel type, channel coding, rate adaption, starting time. 3404583 O080768 Tb2 W Page 8 GSM 08.52 - version 4.0.1 : July 1993 9 4.3.2.3. Power Control The order
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