ITU-T G 736-1993 Characteristics of a Synchronous Digital Multiplex Equipment Operating at 2048 kbit s - General Aspects of Digital Transmission (Study Group XV) 9 pp《工作在2048kbit s.pdf
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1、ITU-T RECMN*G=73b 93 4862573 0583365 Lb4 = INTERNATIONAL TELECOMMUNICATION UNION ITU-T TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU G.736 (03/93) GENERAL ASPECTS OF DIGITAL TRANSMISSION CHARACTERISTICS OF A SYNCHRONOUS DIGITAL MULTIPLEX EQUIPMENT OPERATING AT 2048 kbits ITU-T Recommendation G.736
2、 (Previously “CCITT Recommendation”) ITU-T RECMN*G*736 93 m 4862591 0583366 OTO FOREWORD The Telecommunication Standardization Sector (IT-T) is a permanent organ of the International Telecom- munication Union. The IT-T is responsible for studying technical, operating and tariff questions and issuing
3、 Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The World Telecommunication Standardization Conference (WTSC), which meets every four years, established the topics for study by the Il7J-T Study Groups which, in their turn, produce Recommendations on the
4、se topics. IT-T Recommendation G.736 was revised by the ITU-T Study Group XV (1988-1993) and was approved by the WTSC Ielsinki, March 1-12, 1993). NOTES 1 As a consequence of a reform process within the International Telecommunication Union (ITU), the CCITT ceased to exist as of 28 February 1993. In
5、 its place, the ITU Telecommunication Standardization Sector (ITU-T) was created as of 1 March 1993. Similarly, in this reform process, the CCIR and the IFRB have been replaced by the Radiocommunication Sector. In order not to delay publication of this Recommendation, no change has been made in the
6、text to references containing the acronyms “CCIIT, CCIR or IFRB” or their associated entities such as Plenary Assembly, Secretariat, etc. Future editions of this Recommendation will contain the proper terminology related to the new ITU structure. 2 telecommunication administration and a recognized o
7、perating agency. in this Recommendation, the expression “Administration” is used for conciseness to indicate both a O ITU 1994 AU 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, wi
8、thout permission in writing from the ITU. CONTENTS Page . 1 1 General characteristics 1 1 1.1 Bit rate 1.2 Timing signai 2 Frame structure . 3 Frame alignment and CRC procedures 3.1 3.2 Recovery of frame alignment . 3.3 3.4 CRC bit monitoring Fault conditions and consequent actions 4.1 Fault conditi
9、ons Loss of frame alignment . CRC multiframe alignment in time slot O . 4 4.2 Consequent actions . 4 5 Interfaces 6 Jitter 4 Jitter at 2048 kbit/s output 6.2 Jitter at tributary outputs 4 . 5 4 6.1 6.3 Jitter transfer functions . Recommendation 6.736 (03/93) i ITU-T RECNN*G-736 93 W 4862573 05833b8
10、973 Recommendation G.736 CHARACTERISTICS OF A SYNCHRONOUS DIGITAL MULTIPLEX EQUIPMENT OPERATING AT 2048 kbih (Melbourne, 1988; revised at Helsinki, 1993) This Recommendation gives the characteristics of a synchronous digital multiplex equipment, to combine up to 3 1 tributary channels at 64 kbit/s o
11、r n x 64 kbit/s in a 2048 kbit/s digital stream. 1 General characteristics 1.1 Bit rate The nominal bit rate is 2048 kbit/s. The tolerance on this rate is f 50 parts per million (ppm). 1.2 Timing signal It should be possible to derive the transmit timing signal from any of the following: a) b) c) fr
12、om an internai oscillator. NOTES 1 2 from the received 2048 kbits signal; from an external source at 2048 kHz (see 5); The possibility of also deriving the transmit timing signai from a 64 kbit/s or n x 64 kbit/s tributary is under study. The provision of a timing signal output, available for the pu
13、rpose of synchronizing other equipments, is an option that might be required depending upon national synchronization arrangements. 2 Frame structure Refer to 2.3 and 5 of Recommendation G.704 for the basic frame structure and Characteristics of the frame structure carrying channels at various bit ra
14、tes in 2048 kbit/s. Bit 1 of the frame should be used in accordance with 2.2.3 of G.704, i.e. for a CRC check bit procedure. NOTE - In case of interconnection with multiplex equipment using time slot 16 for internal purposes, the use of this time slot for a 64 kbit/s tributary could be excluded. It
15、could also be used for internal purposes according to Recommendation G.704. 3 Frame alignment and CRC procedures (An illustration of the procedure is given in Figure 2/G.706.) 3.1 Loss of frame alignment Refer to 4.1. UG.706. 3.2 Recovery of frame alignment Refer to 4.1.2/G.706. 3.3 Refer to 4.2/G.7
16、06. CRC multiframe alignment in time slot O 3.4 CRC bit monitoring Refer to 4.3/G.706. Recommendation G.736 (03193) 1 ITU-T RECHNaG.73b 73 = 48b259L 0583367 BOT w 4 Fault conditions and consequent actions 4.1 Fault conditions The digital muldex should detect the following fault conditions. 4.1.1 Fai
17、lure of power supply 4.1.2 Failure of the incoming signal at the 64 kbih tributary input port NOTE - This detection is not mandatory when contradirectional interfaces are used. 4.1.3 Loss of the incoming signai at 2048 kbih NOTES 1 2 The detection of this fault condition is required only when it doe
18、s not result in an indication of loss of fiame Where separate circuits are used for the digital signal and the timing signal, the loss of either or both should constitute alignment. the loss of the incoming signal. 4.1.4 Loss of frame alignment at 2048 kbis 4.1.5 4.1.5.1 seconds should be less than
19、10-6. With a random bit error ratio of 2 1.10-3, the probability of activating the indication of fault condition in a few seconds should be higher than 0.95. 4.1.5.2 few seconds should be almost O. With a random bit error ratio I 1.104, the probability of deactivating the indication of fault conditi
20、on in a few seconds should be higher than 0.95. NOTE - The activating and deactivating period specified as “a few seconds” is intended to be in the order of 4 to 5 seconds. Excessive bit error ratio detected by monitoring the frame alignment signal With a random bit error ratio of I 1. lo4, the prob
21、ability of activating the indication of fault condition in a few With a random bit error ratio of 2-1-10-3, the probability of deactivating the indication of fault condition in a 4.1.6 Loss of timing signai The internal oscillator is not locked to the timing signals defined in items a) and b) of 1.2
22、 and in Note 1 of 1.2. The detection criteria for this fault condition are under study. 4.1.7 See 4.2. Alarm condition received from the remote digitai muidex 4.2 Consequent actions Further to the detection of a fault condition, appropriate actions should be taken as specified in Table 1. The conseq
23、uent actions are as follows. 4.2.1 Prompt maintenance alarm indication generated to signify that performance is below acceptable standards and maintenance attention is required locally. When the AIS (see General Note below to4.2) at a 2048 kbit/s input is detected, the prompt maintenance alarm indic
24、ation association with loss of frame alignment (see 4.1.4) and excessive error ratio (see4.1.5) should be inhibited, while the rest of the consequent actions are in accordance with those associated in Table 1 with the two fault conditions. NOTE - The location and provision of any visual andor audibl
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