ITU-T G 706-1991 Frame Alignment and Cyclic Redundancy Check (CRC) Procedures Relating to Basic Frame Structures Defined in Recommendation G 704 (Study Group XVIII) 19 pp《与建议G 704规.pdf
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1、CCITT RECMN*G.706 91 INTERNATIONAL TELECOMMI 4862593 05bLb2lI 4 NICATION UNION CCITT THE INTERNATIONAL TELEGRAPH AND TELEPHONE CONS U LTATIVE COMM ITTEE GENERAL ASPECTS OF DIGITAL TRANSMISSION SYSTEMS; TERMINAL EQUIPMENTS G.706 FRAME ALIGNMENT AND CYCLIC REDUNDANCY CHECK (CRC) PROCEDURES RELATING TO
2、 BASIC FRAME STRUCTURES DEFINED IN RECOMMENDATION G.704 Recommendation G.706 - CCITT RECVN*G-706 71 4Bb2.591 05bLb29 b INTERNATIONAL TELECOMMUNICATION UNION CCITT THE INTERNATIONAL TELEGRAPH AND TELEPHONE CONSULTATIVE COMMITTEE GENERAL ASPECTS OF DIGITAL TRANSMISSION SYSTEMS; TERMINAL EQUIPMENTS G.7
3、06 FRAME ALIGNMENT AND CYCLIC REDUNDANCY CHECK (CRC) PROCEDURES RELATING TO BASIC FRAME STRUCTURES DEFINED IN RECOMMENDATION G.704 Recommendation G.706 Geneva, 1991 CCITT RECMN*G.706 91 W 48b2591 05bLb3G e! W FOREWORD The CCIIT (the International Telegraph and Telephone Consultative Committee) is a
4、permanent organ of the International Telecommunication Union (ITU). CCITT is responsible for studying technical, operating and tariff questions and issuing Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The Plenary Assembly of CCIT which meets every fou
5、r years, establishes the topics for study and approves Recommendations prepared by its Study Groups. The approval of Recommendations by the members of CCIT between Plenary Assemblies is covered by the procedure laid down in CCiT Resolution No. 2 (Melbourne, 1988). Recommendation G.706 was prepared b
6、y Study Group XVIII and was approved under the Resolution No. 2 procedure on the 5th of April 1991. CCIT NOTES 1) telecommunication Administration and a recognized private operating agency. In this Recommendation, the expression “Administration“ is used for conciseness to indicate both a 2) A list o
7、f abbreviations used in this Recommendation can be found in Annex D. O ITU 1991 All rights reserved, No part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from the ITU. - CC
8、ITT RECMN*G*70b 93 4862593 05b3b3L LI Recommendation G.706 FRAME ALIGNMENT AND CYCLIC REDUNDANCY CHECK (CRC) PROCEDURES RELATING TO BASIC FRAME STRUCTURES DEFINED IN RECOMMENDATION G.704 (Melbourne, 1988, revised 1990) 1 General This Recommendation relates to equipment which receives signals with ba
9、sic frame structures as defined in Recommendation G.704. It defines the frame alignment, the cyclic redundancy check (CRC) multiframe alignment and CRC bit error monitoring procedures to be used by such equipment. Annex A contains background information about the use of the CRC procedures and their
10、limitations. Annex B gives details of a modified CRC-4 multiframe alignment algorithm which allows automatic interworking between equipment with and without a CRC-4 capability. Annex C gives details regarding the updating of CRC-4 information when an intermediate equipment (Le. between true path ter
11、minating equipments) has a write-access to a message-based data-link facility (see Recommendation G.704, $2.3.3.5.4). 2 Frame alignment and CRC procedures at 1544 kbit/s interface 2.1 Loss and recovery offiame alignment There are two alternative multiframe structures at the 1544 kbit/s interface: a)
12、 24-frame multiframe, and b) 12-frame multiframe. 2.1.1 Loss offrame alignment The frame alignment signal should be monitored to determine if frame alignment has been lost. Loss of frame alignment should be detected within 12 ms. Loss of frame alignment must be confirmed over several frames to avoid
13、 the unnecessary initiation of the frame alignment recovery procedure due to transmission bit errors. The frame alignment recovery procedure should commence immediately once lass of frame alignment has been confirmed. Note - For the 12-frame multiframe described in Recommendation G.704, loss of mult
14、iframe alignment is deemed to occur when loss of frame alignment occurs. 2.1.2 Recovery offrame alignment 2.1.2.1 Frame alignment recovery time The frame alignment recovery time is specified in terms of the maximum average reframe time in the absence of errors. The maximum average reframe time is th
15、e average time to reframe when the maximum number of bit positions must be examined for locating the frame alignment signal. a) 24-frame multiffame The maximum average reframe Ume should not exceed 15 ms. Note - Some existing designs of equipment were designed to a limit of 50 ms. Recommendation .G
16、.706 1 CCITT RECMN*G*70b 91 4862.591 05bLb32 b = b) 12-frame mutiframe Start frame 4 search The maximum average reframe time should not exceed 50 ms. Noce - These times do not include the time required for the CRC procedure for false frame alignment verification defined in 9 2.2.2. 2.1.2.2 Strategy
17、for pame alignment recovery a) 24-frame multiframe Frame alignment should be recovered by detecting the valid frame alignment signal. When the CRC-6 code is utilized for error performance monitoring (see 8 2.2.3), the CRC-6 information may be coupled with the framing algorithm to ensure that a valid
18、 frame alignment signal contained within the 24 F-bits is the only pattern onto which the reframe circuit can permanently lock. This procedure is illustrated in Figure UG.706. b) 12-frame multiframe Overall frame alignment should be recovered by way of simultaneous detection of the frame alignment s
19、ignal and the multiframe alignment signal, or of frame alignment followed by multiframe alignment. 4 F-bits I I Frame re-alignment complete iaomi-a7 FIGURE 1/G.706 False frame alignment protectlon using a cyclic redundancy check (CRC) (1544 and 6312 kbit/s) 2 Recommendation G.706 CCITT RECMN*G-706 9
20、1 4862571 0561633 8 2.2 CRC bit monitoring Error monitoring by CRC-6 assumes a signal quality sufficient for frame alignment to be established so that CRC-6 bits can be correctly accessed. 2.2.1 Monitoring procedure i) A received CRC message block (CMB) is acted upon by the multiplication/division p
21、rocess defined in Recommendation G.704 after having its F-bits replaced by binary 1s. ii) The remainder resulting from the division process is then stored and compared on a bit-by-bit basis with the CRC bits received in the next CMB. iii) If the remainder exactly corresponds to the CRC bits containe
22、d in the next CMB of the received signai, it is assumed that the checked CMB is error-free. 2.2.2 Monitoring for false pame alignment (see 5 A.l.l) In the case of the 24-frame multiframe, when the CRC-6 code is utilized for error performance monitoring, it may also be used to provide immunity agains
23、t spurious frame alignment signals. The procedure described in Q 2.1.2.2 a) should be followed. 2.2.3 Error performance monitoring using CRC-6 (see 0 A.1.2) For the purpose of error performance monitoring, it should be possible to obtain indications of each CC message block which is received in erro
24、r. The consequent error information should be used in accordance with the requirements to be defined in respective equipment Recommendations. 3 Frame alignment and CRC procedures at 6312 kbt/s interface 3.1 Loss and recovery offrame alignment For the 63 12 kbit/s hierarchical level, the term “frame
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