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本文(ETSI ETS 300 574-1999 Digital Cellular Telecommunications System (Phase 2) Multiplexing and Multiple Access on the Radio Path (Seventh Edition GSM 05 02 Version 4 10 1)《数字蜂窝通信系统(第2.pdf)为本站会员(visitstep340)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ETSI ETS 300 574-1999 Digital Cellular Telecommunications System (Phase 2) Multiplexing and Multiple Access on the Radio Path (Seventh Edition GSM 05 02 Version 4 10 1)《数字蜂窝通信系统(第2.pdf

1、STD-ETSI ETS 300 574-ENGL 1979 E 3400855 0426342 075 I LUROPEAN T I ELECOMMUNICATION STANDARD ETS 300 574 August 1999 Seventh Edition Source: SMG Reference: RE/SMG-O20502PR6 ICs: 33.020 Key words: Digital cellular telecommunications system, Global System for Mobile communications (GSM) Digital cellu

2、lar telecommunications system (Phase 2); Multiplexing and multiple access on the radio path (GSM 05.02 version 4.10.1) ETSI European Telecommunications Standards Institute ETSI Secretariat Postal address: F-O6921 Sophia Antipolis CEDEX - FRANCE Office address: 650 Route des Lucioles - Sophia Antipol

3、is - Valbonne - FRANCE Internet: secretariat etsi.fr - httpd/www.etsi.org Tel.: +33 4 92 94 42 O0 - Fax: +33 4 93 65 47 16 Copyright Notification: No pari may be reproduced except as authorized by written permission. The copyright and the foregoing restriction extend to reproduction in all media. O

4、European Telecommunications Standards Institute 1999. All rights reserved. STD-ETSI ETS 300 574-ENGL 1999 W 3400855 042bL43 TZL D Page 2 ETS 300 574 (GSM 05.02 version 4.10.1): August 1999 Whilst every care has been taken in the preparation and publication of this document, errors in content, typogr

5、aphical or otherwise, may occur. If you have comments concerning its accuracy, please write to “ETSI Standards Making Support Dept.“ at the address shown on the title page. STD-ETSI ETS 300 574-ENGL 1999 3400855 042b144 9b8 W Page 3 ETS 300 574 (GSM 05.02 version 4.10.1): August 1999 Contents Intell

6、ectual Property Rights 5 Foreword . 5 1 Scope 7 1.1 Normative references 7 1.2 Abbreviations . 7 2 General 7 3 Logical channels 8 3.1 General 8 3.2 Traffic channels . 8 3.2.1 General 8 3.2.2 Speech traffic channels . 8 3.2.3 Data traffic channels 8 3.3 Control channels 8 3.3.1 General 8 3.3.2 Broadc

7、ast channels . 8 3.3.2.1 Frequency correction channel (FCCH) 8 3.3.2.2 Synchronization channel (SCH) . 8 3.3.2.3 Broadcast control channel (BCCH) . 9 3.3.3 Common control type channels, known when combined as a common control channel (CCCH) 9 3.3.4 Dedicated control channels . 9 3.3.5 Cell Broadcast

8、 Channel (CBCH) . 10 Combination of channels . 10 3.4 4 The physical resource . 10 4.1 General 10 4.2 Radio frequency channels . 10 4.2.1 Cell allocation and mobile allocation . 10 4.2.2 Downlink and uplink 10 Timeslots and TDMA frames . 10 4.3.1 General 10 4.3.2 Timeslot number . 11 4.3.3 TDMA fram

9、e number . 11 4.3 5 Physical channels 11 General . 5.1 11 5.2 Bursts 11 5.2.1 General 11 5.2.2 Types of burst and burst timing . 11 5.2.3 Normal burst (NB) . 12 5.2.4 Frequency correction burst (FB) 12 5.2.5 5.2.6 Dummy burst . 13 5.2.7 Access burst (AB) 13 Physical channels and bursts 14 Radio freq

10、uency channel sequence . 14 Timeslot and TDMA frame sequence 14 5.6.1 General 14 5.6.2 General parameters 14 5.6.3 Specific parameters 15 Synchronization burst (SB) 13 5.2.8 Guard period 14 . 5.3 5.4 5.5 5.6 Parameters for channel definition and assignment . 14 STDmETSI ETS 300 574-ENGL 3997 W 34008

11、55 0426345 8T4 Page 4 ETS 300 574 (GSM 05.02 version 4.10.1): August 1999 6 Mapping of logical channels onto physical channels . 6.1 General . 6.2 . 15 Mapping in frequency of logical channels onto physical channels 15 6.2.1 General . 15 6.2.2 Parameters . 15 6.2.3 Hopping sequence generation . . 15

12、 6.2.4 Specific cases . 16 6.2.5 Change in the frequency allocation of a base transceiver station 17 Mapping in time of logical channels onto physical channels . 17 6.3.1 General . 17 6.3.2 Key to the mapping table of section 7 . 17 6.3.3 Mapping of TCH/F9.6, TCH/F4.8, TCH/H4.8 and TCH/H2.4 . 17 6.3

13、.4 Mapping of BCCH data . 18 6.3.5 Mapping of SID Frames 18 Permitted channel combinations . 18 General . 6.5.1 19 6.5.2 Determination of CCCH-GROUP and PAGING-GROUP . 20 6.5.3 Determination of specific paging multiframe and paging block index . 20 6.5.4 Short Message Service Cell Broadcast (SMSCB)

14、20 6.3 6.4 6.5 Operation of channels and channel combinations 19 Annex A (normative): Phase 2 mobiles in a phase 1 infrastructure 34 A.l Scope 34 A.2 Implementation options for TCH channels . 34 A.2.1 CO filling on the TCH . 34 A.2.2 Half burst filling 34 A.2.3 Dummy burst Stealing flag 34 A.2.4 Hal

15、f burst Filling Stealing flag 35 A.2.5 Allowed combinations 35 A.3 Idle Channels 35 Annex B (informative): Change control history . 36 History . 37 STDoETSI ETS 300 574-ENGL 1999 = 3400855 042614b 730 m Page 5 ETS 300 574 (GSM 05.02 version 4.10.1): August 1999 Intellectual Property Rights IPRs esse

16、ntial or potentially essential to the present document may have been declared to ETSI. The information pertaining to these essential IPRs, if any, is publicly available for ETSI members and non- members, and can be found in SR O00 31 4: “lntellectual Propedy Rights (IPRs); Essential, or potentially

17、Essential, IPRs notified to ETSI in respect of ETSI standards“, which is available free of charge from the ETSI Secretariat. Latest updates are available on the ETSI Web server (http:/www.etsi.org/ipr). Pursuant to the ETSI IPR Policy, no investigation, including IPR searches, has been carried out b

18、y ETSI. No guarantee can be given as to the existence of other IPRs not referenced in SR O00 314 (or the updates on the ETSI Web server) which are, or may be, or may become, essential to the present document. Foreword This European Telecommunication Standard (ETS) has been produced by the Special Mo

19、bile Group (SMG) Technical Committee of the European Telecommunications Standards Institute (ETSI). This ETS defines the physical channels of the radio sub-system required to support the logical channels used within the Digital cellular telecommunications system (Phase 2). The contents of this ETS a

20、re subject to continuing work within SMG and may change following formal SMG approval. Should SMG modify the contents of this ETS it will then be re-submitted for approval by ETSI with an identifying change of release date and an increase in version number as follows: Version 4.x.y where: 4 indicate

21、s GSM Phase 2 x the second digit is incremented for all changes of substance, .e. technical enhancements, corrections, updates, etc. y the third digit is incremented when editorial only changes have been incorporated in the specification. Transposition dates Date of adoption of this ETS: Date of lat

22、est announcement of this ETS (doa): Date of latest publication of new National Standard or endorsement of this ETS (dop/e): Date of withdrawal of any conflicting National Standard (dow): 6 August 1999 30 November 1999 31 May2000 31 May2000 STD.ETS1 ETS 300 574-ENGL 1997 W 3400855 0426147 b77 Page 7

23、ETS 300 574 (GSM 05.02 version 4.1 0.1): August 1999 1 Scope This European Telecommunication Standard (ETS) defines the physical channels of the radio sub-system required to support the logical channels. It includes a description of the logical channels and the definition of frequency hopping, TDMA

24、frames, timeslots and bursts. 1.1 Normative references This ETS incorporates by dated and undated reference, provisions from other publications. These normative references are cited at the appropriate places in the text and the publications are listed hereafter. For dated references, subsequent amen

25、dments to or revisions of any of these publications apply to this ETS only when incorporated in it by amendment or revision. For undated references the latest edition of the publication referred to applies. GSM O1 .O4 (ETR 100): “Digital cellular telecommunications system (Phase 2); Abbreviations an

26、d acronyms“. GSM 03.03 (ETS 300 523): “Digital cellular telecommunications system (Phase 2); Numbering, addressing and identification“. i31 GSM 04.03 (ETS 300 552): “Digital cellular telecommunications system (Phase 2); Mobile Station - Base Station System (MS - BSS) interface Channel structures and

27、 access capabilities“. 41 GSM 04.06 (ETS 300 555): “Digital cellular telecommunications system (Phase 2); Mobile Station - Base Station System (MS - BSS) interface Data Link (DL) layer specification“. 151 GSM 04.08 (ETS 300 557): “Digital cellular telecommunications (Phase 2); Mobile radio interface

28、 layer 3 specification“. El GSM 05.03 (ETS 300 575): “Digital cellular telecommunications (Phase 2); Channel coding“. 71 GSM 05.04 (ETS 300 576): “Digital cellular telecommunications (Phase 2); Modulation“. 181 GSM 05.05 (ETS 300 577): “Digital cellular telecommunications (Phase 2); Radio transmissi

29、on and reception“. i91 GSM 05.08 (ETS 300 578): “Digital cellular telecommunications (Phase 2); Radio subsystem link control“. 1 o1 GSM 05.1 O (ETS 300 579): “Digital cellular telecommunications (Phase 2); Radio subsystem synchronization“. 1.2 Abbreviations Definitions and abbreviations used in this

30、 ETS are listed in GSM O1 .O4 l. 2 General system system system system system system The radio subsystem is required to support a certain number of logical channels that can be separated into two overall categories as defined in GSM 04.03: i) The traffic channels (TCHs). i) The control channels. Mor

31、e information is given about these logical channels in section 3 which also defines a number of special channels used by the radio sub-system. Previous page is blank STD-ETSI ETS 300 574-ENGL 1994 3400855 042b148 503 m Page 8 ETS 300 574 (GSM 05.02 version 4.10.1): August 1999 Section 4 of this docu

32、ment describes the physical resource available to the radio sub-system, section 5 defines physical channels based on that resource and section 6 specifies how the logical channels shall be mapped onto physical channels. Figure 1 depicts this process. 3 Logical channels 3.1 General This section descr

33、ibes the logical channels that are supported by the radio subsystem. 3.2 Traffic channels 3.2.1 Gen era I Traffic channels (TCHs) are intended to carry either encoded speech or user data. Two general forms of traffic channel are defined: i) Full rate traffic channel (TCH/F). This channel carries inf

34、ormation at a gross rate of 22.8 kbitsh. i) Half rate traffic channel (TCH/H). This channel carries information at a gross rate of 11.4 kbiffs. The specific traffic channels available in the categories of speech and user data are defined in the sections following. 3.2.2 Speech traffic channels The f

35、ollowing traffic channels are defined to carry encoded speech: i) i) Full rate traffic channel for speech (TCH/FS). Half rate traffic channel for speech (TCH/HS). 3.2.3 Data traffic channels The following traffic channels are defined to carry user data: i) i) iii) iv) v) Full rate traffic channel fo

36、r 9.6 kbiffs user data (TCH/F9.6). Full rate traffic channel for 4.8 kbiffs user data (TCH/F4.8). Half rate traffic channel for 4.8 kbiffs user data (TCH/H4.8). Half rate traffic channel for 5 2.4 kbitk user data (TCH/H2.4). Full rate traffic channel for 5 2.4 kbis user data (TCH/F2.4). 3.3 Control

37、channels 3.3.1 General Control channels are intended to carry signalling or synchronization data. Three categories of control channel are defined: broadcast, common and dedicated. Specific channels within these categories are defined in the sections following. 3.3.2 Broadcast channels 3.3.2.1 Freque

38、ncy correction channel (FCCH) The frequency correction channel carries information for frequency correction of the mobile station. It is required only for the operation of the radio sub-system. 3.3.2.2 Synchronization channel (SCH) The synchronization channel carries information for frame synchroniz

39、ation of the mobile station and identification of a base transceiver station. It is required only for the operation of the radio sub-system. Specifically the synchronization channel shall contain two encoded parameters: STD.ETSI ETS 300 574-ENGL Lqqq 3400455 042bL49 44T Page 9 ETS 300 574 (GSM 05.02

40、 version 4.10.1): August 1999 Base transceiver station identiy code (BSIC): 6 bits (before channel coding) consists of 3 bits of PLMN colour code with range O to 7 and 3 bits of BS colour code with range O to 7 as defined in GSM 03.03. a) b) Reduced TDMA frame number (RFN): 19 bits (before channel c

41、oding) = T1 (1 1 bits) range O to 2047 = FN div ( 26 x 51) T2 (5 bits) range O to 25 = FN mod 26 T3 (3 bits) range O to 4 = (T3 - 1) div 10 where T3 (6 bits) range O to 50 = FN mod 51 and FN = TDMA frame number as defined in section 4.3.3. GSM 04.06 and GSM 04.08 specify the precise bit ordering, GS

42、M 05.03 the channel coding of the above parameters and GSM 05.10 defines how the TDMA frame number can be calculated from Ti, T2, and T3. 3.3.2.3 Broadcast control channel (BCCH) The broadcast control channel broadcasts general information on a base transceiver station per base transceiver station b

43、asis. Of the many parameters contained in the BCCH, the use of the following parameters, as defined in GSM 04.08 are referred to in section 6.5: a) CCCHCONF which indicates the organization of the common control channels: From this parameter, the number of common control channels (BS-CCCHANS) and wh

44、ether or not CCCH or SDCCH are combined (BS-CCCH-SDCCH-COMB = true or false) are derived as follows: CCCH-CON F B S-C C-C HAN S BS-CCCH-SDCCH-COMB O00 O0 1 o1 o 1 O0 110 false true false false false b) c) 3.3.3 i) ii) iii) 3.3.4 i) ii) iii) iv) BS-AG-BLKS-RES which indicates the number of blocks on

45、each common control channel reserved for access grant messages: 3 bits (before channel coding) range O to 7. BS-PA-MFRMS which indicates the number of 51 TDMA frame multiframes between transmission of paging messages to mobiles of the same paging group: 3 bits (before channel coding) range 2 to 9. C

46、ommon control type channels, known when combined as a common control channel (CCCH) Paging channel (PCH): Downlink only, used to page mobiles. Random access channel (RACH): Uplink only, used to request allocation of a SDCCH. Access grant channel (AGCH): Downlink only, used to allocate a SDCCH or dir

47、ectly a TCH. Dedicated control channels Slow, TCH/F associated, control channel (SACCHTTF). Fast, TCH/F associated, control channel (FACCH/F). Slow, TCH/H associated, control channel (SACCHTTH). Fast, TCH/H associated, control channel (FACCH/H). STD-ETSI ETS 300 574-ENGL 1799 E 3400855 O42b150 161 =

48、 Page 10 ETS 300 574 (GSM 05.02 version 4.10.1): August 1999 v) vi) vi) viii) Stand alone dedicated control channel (SDCCH/8). Slow, SDCCH/8 associated, control channel (SACCHK8). Stand alone dedicated control channel, combined with CCCH (SDCCHM). Slow, SDCCH/4 associated, control channel (SACCH/C4)

49、. 3.3.5 Cell Broadcast Channel (CBCH) The CBCH, downlink only, is used to carry the short message service cell broadcast (SMSCB). The CBCH uses the same physical channel as the SDCCH. 3.4 Combination of channels Only certain combinations of channels are allowed as defined in GSM 04.03. Section 6.4 lists the combinations in relation to basic physical channels. 4 The physical resource 4.1 General The physical resource available to the radio sub-system is an allocation of part of the radio spectrum. This resource is partitioned both in frequency and time. Frequency is partiti

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