ITU-T J 55-1990 DIGITAL TRANSMISSION OF HIGH-QUALITY SOUND-PROGRAMME SIGNALS ON DISTRIBUTION CIRCUITS USING 480 kbit s (496 kbit s) PER AUDIO CHANNEL《使用480kbit s(496kbit s)的音频通道在分配.pdf
《ITU-T J 55-1990 DIGITAL TRANSMISSION OF HIGH-QUALITY SOUND-PROGRAMME SIGNALS ON DISTRIBUTION CIRCUITS USING 480 kbit s (496 kbit s) PER AUDIO CHANNEL《使用480kbit s(496kbit s)的音频通道在分配.pdf》由会员分享,可在线阅读,更多相关《ITU-T J 55-1990 DIGITAL TRANSMISSION OF HIGH-QUALITY SOUND-PROGRAMME SIGNALS ON DISTRIBUTION CIRCUITS USING 480 kbit s (496 kbit s) PER AUDIO CHANNEL《使用480kbit s(496kbit s)的音频通道在分配.pdf(11页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNfON ITU-T TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU TELEVISION AND SOUND TRANSMISSION J .55 (ex CMTT.718) (06/90) DIGITAL TRANSMISSION OF HIGH-QUALITY SOUND-PROGRAMME SIGNALS ON DISTRIBUTION CIRCUITS USING 480 kbitls (496 kbitls) PER AUDIO CHANNEL ITU-T Recomm
2、endation J.55 (Formerly Recommendation ITU-R CMTT.718) STDmITU-T RECMN J.55-ENGL 1770 48b257L Ob30078 54I FOREWORD The ITU Telecommunication Standardization Sector (ITU-T) is a permanent organ of the International Telecommunication Union. The ITU-T is responsible for studying technical, operating an
3、d tariff questions and issuing 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 ITU-T Study Groups which, in their turn, p
4、roduce Recommendations on these topics. ITU-T Recommendation J.55 (formerly Recommendation ITU-R CMTT.718) was elaborated by the former ITU-R Study Group CMTT. See Note 1 below. NOTES 1 As a consequence of a reform process within the International Telecommunication Union (ITU), the CCITT ceased to e
5、xist as of 28 February 1993. In its place, the ITU Telecommunication Standardization Sector (IT-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 Similarly, in this reform process, the CCIR and the IFRB have been replaced by the Radiocommunication Sector (ITU-R). Conforming to a joint decision by the World Telecom
6、munication Standardization Conference (Helsinki, March 1993) and the Radiocommunication Assembly (Geneva, November 1993), the ITU-R Study Group CMTT was transferred to ITU-T as Study Group 9, except for the satellite news gathering (SNG) study area which was transferred to ITU-R Study Group 4. 2 adm
7、inistration and a recognized operating agency. In this Recommendation, the expression “Administration” is used for conciseness to indicate both a telecommunication O ITU 1990 All rights reserved. No part of this publication may be reproduced or utilized in any form or by any means, electronic or mec
8、hanical, including photocopying and microfilm, without permission in writing from the ITU. - STD-ITU-T RECMN J.55-ENGL 1990 48bZ.591 Ob30079 Y80 Recommendation J.55) DIGITAL TRANSMISSION OF HIGH-QUALITY SOUND-PROGRAMME SIGNALS ON DISTRIBUTION CIRCUITS USING 480 kbit/s (496 kbit/s) PER AUDIO CHANNEL
9、(1990) The CCIR, CONSIDERING a) further audio downstream processing; b) case of DBS; c) (Recommendation 606); 4 complying with CCIR Recommendation 660; e) Recommendation 1.412, that the distribution of high-quality sound-programme signals from the studio to transmitters and users does not require th
10、at in general more than one high-quality sound-programme signal has to be conveyed over distribution circuits as in the that a sampling frequency of 32 kHz is recommended for the digital transmission of high-quality sound-programme signals that some digital broadcasting applications may require syst
11、em performances that go beyond those offered by equipment that the high-quality sound-programme signals should interface the ISDN at the H1 level as specified in CCITT UNANIMOUSLY RECOMMENDS 1. that for distribution applications where a sampling frequency of 32 kHz is used and where a dynamic range
12、corresponding to more than i4 bits is required the coding method described in 8 1 of Annex I should be used on links providing a BER of less than 10-5: 2. according to the format described in 8 2 of Annex I; that for transmission at H12 level, two stereophonic programmes or four monophonic programme
13、s should be multiplexed 3. method and multiplexing format described in Annexe II should be used. North America) shall be made using Recommendation 660. that for cases where a higher ancillary data capacity is required and dedicated 2048 kbits links are available, the coding Note - Exchange of intern
14、ational digital sound-programme signals on networks with other hierarchical rates (1544 kbit/s in ) Formerly Recommendation ITU-R CMTT.718. Recommendation J.55 (06/90) - STD-ITU-T RECMN J.55-ENGL 1990 98b2591 Ob30L00 T22 W ANNEX 1 DIGITAL TRANSMISSION OF HIGH-QUALITY SOUND-PROGRAMME SIGNALS ON DISTR
15、IBUTION CIRCUITS USING 480 kbiffs AUDIO CHANNEL 1. Coding characteristics 1.1 Sampling fiequency The sampling frequency shall be 32 kHz. The sampling frequency tolerance shall be f5 x as specified in CCITT Recommendations G.732 and (3.733 for primary PCM multiplex equipment. This sampling frequency
16、is consistent with that indicated in CCIR Recommendation 606. 1.2 Coding method 16/14-bit floating point companding with a 2 ms coding block length (Le. 64 consecutive samples per block) and a 3-bit scale factor (transmitted by signalling in parity). The 16-bit samples of the sound signal are repres
17、ented in a 2 s complement format. The first bit of each word is the MSB (sign bit, O - +), and the last the LSB. Using a floating point system, the 16-bit samples are converted into 14-bit code words for transmission. A 3-bit scale factor applying to a block of 64 samples indicates how many of the b
18、its (O . . . 7) following the sign bit (yi) in all sampled words have the same value as the sign bit (Fig. la). The redundancy indicated by the scale factor does not need to be transmitted. Instead, the samples and their relevant information must be shifted towards the sign bits (floating-point syst
19、em). This allows the 15th and 16th bits of the source code words to be transmitted in the case of low signal amplitudes. The bits marked Zl to Z5 have not yet been assigned (Fig. 1 b). At the receiving end the scale factor is used to shift the bits of the samples back to their original value. This y
20、ields 16-bit samples and limits the effects of unrecognized bit errors to the amplitude range indicated by the scale factor. 1.3 Sample error-protection After having applied the floating-point technique for reducing the bits per sample from 16 to 14, a parity bit is calculated on the seven most sign
21、ificant bits of each sample, such that the number of “1”s in the group of the seven protected bits and the parity bit is odd. Thus, the best protection against clicks due to bit errors is guaranteed provided concealment in the form of the arithmetic mean value of the samples adjacent to the faulty s
22、ample is performed at the receiving end. If the concealment is done after the 14/16 bit reconversion, errors in least significant bits can also be concealed in an optimum way. 1.4 Ancillary data A data capacity of 4 kbit/s per channel is transmitted by signalling in parity. 1.5 Signalling in parity
23、Chambers, 19851 Signalling in parity is achieved by transmitting the parity bits of an odd number of successive samples without inversion or after inversion, depending on the bit to be signalled. Inversion has to be done, if the bit to be transmitted is 1. The signalling technique used for the scale
24、 factor, its related parity bit, and the ancillary data is based on majority-decision logic at the receiver: for each channel, it processes twelve groups of five consecutive samples (three for the scale factor, one for its parity bit and eight for the ancillary data) to recognize simultaneously the
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