ITU-R REPORT BS 2002-1994 Introduction of Satellite and Complementary Terrestrial Digital Sound Broadcasting in the WARC-92 Frequency Allocations (15 pp)《WARC-92频率分配16PP中卫星和地面补充数据声.pdf
《ITU-R REPORT BS 2002-1994 Introduction of Satellite and Complementary Terrestrial Digital Sound Broadcasting in the WARC-92 Frequency Allocations (15 pp)《WARC-92频率分配16PP中卫星和地面补充数据声.pdf》由会员分享,可在线阅读,更多相关《ITU-R REPORT BS 2002-1994 Introduction of Satellite and Complementary Terrestrial Digital Sound Broadcasting in the WARC-92 Frequency Allocations (15 pp)《WARC-92频率分配16PP中卫星和地面补充数据声.pdf(15页珍藏版)》请在麦多课文档分享上搜索。
1、-1- Rep. ITU-R BS.2002 REPORT ITU-R BS.2002 INTRODUCTION OF SATELLITE AND COMPLEMENTARY TERRESTRIAL DIGITAL SOUND BROADCASTING IN THE WARC-92 FREQUENCY ALLOCATIONS (Questions ITU-R 93/10 and ITU-R 107/10) (1 994) Note - This Report addresses the necessary planning elements associated with satellite
2、and complementary terrestrial digital sound broadcasting and should be read in conjunction with the latest versions of Report ITU-R B0.955 and Report ITU-R BS.1203. 1. Introduction Arising from the WARC-92 Conference, the following frequency allocations were made to Worldwide (Regions 1,2 and 3) exc
3、ept United States: the band 1 452 - 1 492 MHz is allocated for BSS(S) and complementary BS(S) on a primary basis, although some countries (mainly in Europe and Africa) have chosen to maintain this allocation on a secondary basis until 1 April 2007. For the United States and India, the band 2 310 - 2
4、 360 MHz is (in a footnote) allocated for BSS(S) and complementary BS(S) on a primary basis. For some countries in Asia and the Russian Federation, the band 2 535 - 2 655 MHz (note that the bandwidth is 120 MHz), is by means of a footnote, allocated for BSS(S) and complementary BS(S) on a primary ba
5、sis. Associated with the allocations in Article 8 of the RR, there are footnotes restricting the dates of introduction and the level of service in some countries. The worldwide allocation is therefore not available in all countries as the Regulations are now phrased. In particular, the United States
6、 has an alternative allocation and (in a footnote) the band 1 452 - 1 492 MHz is allocated to fixed and mobile services on a primary basis. In addition to the allocation in Article 8, there were several procedures for introduction of new sound services. Resolution No. 527 (WARC-92) recognized that i
7、t may be possible to introduce new digital services in the terrestrial VHF broadcasting bands and opened the door to a more detailed consideration. the broadcasting-satellite service (sound) (BSS(S): - - - Resolution No. 528 (WARC-92) gives details of the introductory procedures. It discusses the ne
8、ed for a planning conference, restricts the range of frequencies that may be used before the planning conference to the upper 25 MHz of the appropriate band, and details the method of calculating interference criteria (these are determined by means of Resolution No. 703 (Rev. WARC- 92) procedures, a
9、nd so there are as yet no formal technical procedures that can be applied). Resolution No. 522 (WARC-92) gives details of the types of orbit that can be used and the future work that is necessary before non-GSO systems can be deployed. Figure 1 shows the differences in allocations throughout the wor
10、ld. 1 COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLicensed by Information Handling Services-2- Rep. ITU-R BS.2002 N I W 9. N U C N I a In c I N II W Ln 7 N I W 9. N U c m N a 1 N N I a In c m N I W M N a3 COPYRIGHT International Telecommunications Union/ITU Radiocommunica
11、tionsLicensed by Information Handling Services-3- Rep. ITU-R BS.2002 2. Service requirements 2.1 Service goals There are a number of possible goals in introducing digital sound broadcasting services: - to replace current AMEM broadcasting in order to provide better quality and more reliable services
12、 and to better compete with other distribution media that can bring “CD“ quality audio services to the listener; to provide the listener with a new service that can compete with the current AMEM broadcasting service; to provide a service with conventional quality grade to large service areas for rec
13、eption by very low cost receivers. - - There is a recognized need for new sound broadcasting services to provide a better service to vehicular receivers (see Recommendation ITU-R B0.789). Furthermore, some services may also be directed to portable receivers for use inside buildings. Currently, sever
14、al administrations and commercial organizations have proposed sound- broadcasting satellite systems having different audio quality levels (CD, “Near-CD“, FM stereophonic, FM monophonic and AM). Service to different kinds of receiver installations has been proposed (vehicular, portable and fixed), as
15、 well to a variety of environments (indoor, outdoor, rural, urban and suburban). All of these system approaches are technically feasible. One or more of them may be cost-effective and attractive to administrations depending on their state of development, the extent of their existing terrestrial syst
16、ems and their broadcasting requirements. There is a need to provide digital sound broadcasting services having a wide range of subjective audio quality. There may be substantial demand, particularly in developing countries and in sparsely settled countries having little terrestrial broadcasting infr
17、astructure, for the digital equivalent of standard monophonic FM, and even for the digital equivalent of double-sideband AM. 2.2 Service objectives The objective of new sound broadcasting services is to improve the availability, quality and diversity of programme services to listeners. Wide area cov
18、erage will bring programme service to many listeners for the first time and advanced digital techniques will allow high-quality sound equivalent to the quality available from other sound media (e.g., compact discs). Advanced digital techniques will also make possible a wide range of new programme-re
19、lated and independent services with minimal impact on spectrum and power requirements. The BSS (sound) and BS (sound) is aimed at fixed, vehicular and portable reception. The technical system objectives are determined by two factors: quality and availability. Quality The service objectives for digit
20、al sound broadcasting may play an important role in determining the type of system to be used and the overall system design and cost. Careful consideration needs to be given to the interaction between performance and economic factors. Digital sound broadcasting has been under consideration now for o
21、ver 25 years, and during that time the reproduction and transmission of sound has undergone considerable development. 3 COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLicensed by Information Handling Services-4- Rep. ITU-R BS.2002 The expectations of the listeners have also
22、increased considerably. Most people in urban areas now expect high-quality stereo sound, even from portable or vehicular radios. The enormous advances in the performance of domestic “hi-fi“ equipment, culminating in the extensive use of compact discs, has conditioned many people to expect sound qual
23、ity greater than that which even fixed FM receivers can give. Even in remote areas, similar expectations often exist, owing to the wide availability of good quality cassette recorders and compact disc players. Much of the wide-area coverage is currently achieved by long-, medium- and short-wave iono
24、spheric transmissions. Even though the population of those areas may prefer to receive entertainment broadcasts of the highest technical quality, it may be more economical for this type of service to accept monophonic service of medium quality provided it was reliable, and could be received on porta
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