ITU-R BO 712-1-1992 HIGH-QUALITY SOUND DATA STANDARDS FOR THE BROADCASTING-SATELLITE SERVICE IN THE 12 GHz BAND《12G频段广播卫星业务的高质量声音 数据标准-第10 11B部分-系统》.pdf
《ITU-R BO 712-1-1992 HIGH-QUALITY SOUND DATA STANDARDS FOR THE BROADCASTING-SATELLITE SERVICE IN THE 12 GHz BAND《12G频段广播卫星业务的高质量声音 数据标准-第10 11B部分-系统》.pdf》由会员分享,可在线阅读,更多相关《ITU-R BO 712-1-1992 HIGH-QUALITY SOUND DATA STANDARDS FOR THE BROADCASTING-SATELLITE SERVICE IN THE 12 GHz BAND《12G频段广播卫星业务的高质量声音 数据标准-第10 11B部分-系统》.pdf(48页珍藏版)》请在麦多课文档分享上搜索。
1、Rec. 712-1 1RECOMMENDATION 712-1*HIGH-QUALITY SOUND/DATA STANDARDS FOR THE BROADCASTING-SATELLITESERVICE IN THE 12 GHz BAND(Questions 83/11 and 85/11)(1990-1992)Rec. 712-1The CCIR,consideringa) the needs expressed for the future development of satellite broadcasting both in the field of simultaneous
2、transmission of a series of radio programmes of a very high technical quality and in the field of high-capacity dataservices;b) the technical performance of the DSR (digital satellite radio) system which allows the transmission, in achannel of the 12 GHz band, of 16 stereophonic programmes of very h
3、igh quality with maximum ruggedness againsttransmission errors;c) the definition of the digital full-channel mode of operation of systems of the MAC/packet family which allowsfor flexible multiplexing (20 Mbit/s for systems C and D, 10 Mbit/s for the D2 system) of sound programmes of highquality as
4、well as any type of data;d) the technical flexibility of the MDS (multi-channel digital sound/data) system which allows not only thetransmission of 12 high quality stereo programmes, but also in the case of lower e.i.r.p., the transmission of 6 highquality programmes with an additional error correct
5、ion code;e) that the MAC/packet system, the DSR system and the MDS system are intended for use via broadcastingsatellites to fixed receivers;f) that other systems are being developed for sound broadcasting at UHF to fixed, portable and especially tomobile receivers,recommendsthat when a sound/data b
6、roadcasting-satellite service to fixed receivers is introduced in the 12 GHz band thepreferred systems should be (see Notes 1 and 2): the DSR system when the predominant consideration is the transmission of a number of very high-qualitysound programmes within a wide coverage area; the full-channel d
7、igital mode of one of the systems of the MAC/packet family when the predominantconsideration is the flexibility required for simultaneous transmission of high-quality sound programmesand high capacity data services; the MDS system when the predominant consideration is compatibility with the digital
8、sub-carrier/NTSCsystem.Note 1 The issue of a sound/data standard for the broadcasting-satellite service is still under consideration in Region 2.Note 2 Detailed system descriptions are given in Annex 1.Note 3 The following guide is given to assist in following the relationship of the Annexes and App
9、endices._*Note from the Director, CCIR Reports 953, 954, 1073 and 1228 were used in preparing this Recommendation.2 Rec. 712-1ANNEX 1APPENDIX 1 TO ANNEX 1ANNEX 1 TO APPENDIX 1ANNEX 2 TO APPENDIX 1ANNEX 3 TO APPENDIX 1ANNEX 4 TO APPENDIX 1ANNEX 5 TO APPENDIX 1APPENDIX 2 TO ANNEX 1APPENDIX 3 TO ANNEX
10、1ANNEX 1High quality sound/data standards forthe broadcasting-satellite service in the 12 GHz band1. IntroductionAccording to the current Radio Regulations, satellite channels in the 12 GHz band are assigned to eachadministration over which television programmes but also, alternatively, other servic
11、es may be broadcast, as long as thetransmitted signals do not cause more interference than conventional FM-TV signals. The appropriate TV standards arerecommended in Recommendation 650 and specified in the relevant parts of the CCIR special publication,“Specifications of Transmission Systems for the
12、 Broadcasting-Satellite Service”.The introduction of digital sound recording and reproduction techniques constitutes a challenge to thebroadcasting organizations to pass on such a quality to the subscribers which has been beyond the possibilities ofconventional transmission methods (e.g. FM stereo).
13、 Besides this, in a number of countries there is a need for theemission of a large number of high-quality sound channels over a coverage area as large as possible. In addition, thegrowing requirements for data broadcast facilities resulted in investigations of systems suitable to transmit both sound
14、and data in a flexible way.Several possible systems are in various stages of development within different administrations. This Annexbriefly describes the basic characteristics of three systems developed in the Federal Republic of Germany, by the EBUand in Japan.2. Summary description of the systems
15、This section gives the summary description of the main features of each of the systems considered. Table 1gives the list of relevant parameters of each system in a comparative way.2.1 The digital satellite radio (DSR) systemThe DSR system was developed in the Federal Republic of Germany to allow sim
16、ultaneous transmission of16 stereophonic or 32 monophonic high-quality sound channels (or any combinations of stereophonic or monophonicchannels) over a wide coverage area. In line with Recommendation 561, the sampling frequency is 32 kHz and theresolution equals 16 bits, preserving a quantizing noi
17、se performance comparable with that of the compact disc. For biterror correction/detection a BCH (63,44) code was chosen, capable of correcting two errors and detecting five errors perblock. In combination with the scale factor (see Appendix 1 to Annex 1) this bit error protection scheme offers a go
18、odsubjective sound quality at a BER of 2 103. The modulation method is differentially encoded, 4-PSK.Rec. 712-1 3 TABLE 1 Relevant parameters of satellite sound/data broadcasting standards for the 12 GHz BSS band Parameter Digital satellite radio MAC/packet family full-channel digital mode Multi-cha
19、nnel digital sound/data (DSR) D2 C/D satellite broadcasting (MDSD) Multiplex structure Synchronous time division multiplex (STD) Asynchronous time division multiplex (ATD) Sound: STD multiplex Data: ATD multiplex Total bit rate (Mbit/s) 20.48 10.125 20.252 24.576 MDS1 (2) : 18.432 (Mode A) 21.504 (M
20、ode B) Useful bit rate (1) (Mbit/s) 19.22 09.576 19.242 MDS2 (2) : 9.216 (Mode A) 10.752 (Mode B) Sound coding (3) 32 kHz sampling frequency 32 kHz sampling frequency (16 kHz for medium quality) Mode A: 32 kHz sampling frequency 14/10 bit near-instantaneous companding 16/14 bit floating point techni
21、que First coding law: 14/10 bit near-instantaneous compandor (HQI) (4) Mode B: 48 kHz sampling frequency 16 bit linear coding Second coding law: 14 bit linear coding (HQL) No pre-emphasis Pre-emphasis per CCITT Recommendation J.17 Pre-emphasis: 50 s (zero) + 15 s (pole) Dynamic range According to 16
22、 bit resolution (equal to compact disk) According to 14 bit resolution Mode A: According to 14 bit resolution Mode B: According to 16 bit resolution Bit-error protection BCH (63,44) code: corrects 2 errors in 63 bits or detects 5 errors. Additional protection by the scale factor First protection lev
23、el: 1 parity bit applied to the 6 MSB (HQI) or to the 10 MSB (HQL case) (error concealment only) MDS1: BCH (63,56) code: corrects 1 error and detects 2 errors. Additional protection by the 8 range information Second protection level: Hamming code (11,6) for HQI and Hamming code (16,11) for HQL: corr
24、ects 1 error or detects 2 erroneous bits. Additional protection by scale factor for both protection levels MDS2: BCH (63,50) code: addition to the above, the whole data is protected by (2,1) Viterbi decoding Number of sound configurations (i.e. combination of sound coding and error protection scheme
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