ITU-R BS 1547-2001 Terrestrial component of systems for hybrid satellite-terrestrial digital sound broadcasting to vehicular portable and fixed receivers in the frequency range 1 4.pdf
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1、 Rec. ITU-R BS.1547 1 RECOMMENDATION ITU-R BS.1547 Terrestrial component of systems for hybrid satellite-terrestrial digital sound broadcasting to vehicular, portable and fixed receivers in the frequency range 1 400-2 700 MHz (Question ITU-R 107/10) (2001) The ITU Radiocommunication Assembly, consid
2、ering a) that there is an increasing interest worldwide for terrestrial and satellite digital sound broadcasting (DSB) to vehicular, portable and fixed receivers in the frequency range 30-3 000 MHz for local, regional and national coverage; b) that the ITU-R has already adopted Recommendations ITU-R
3、 BS.774 and ITU-R BO.789 to indicate the necessary requirements for DSB systems to vehicular, portable and fixed receivers for terrestrial and satellite delivery, respectively; c) that by operating the broadcasting-satellite service (BSS) (sound) in an hybrid configuration the service objectives lis
4、ted in b) above can be more adequately met; d) that Recommendations ITU-R BS.774 and ITU-R BO.789 recognize the benefits of complementary use of terrestrial and satellite systems, and call for a DSB system allowing a common receiver with common processing very large scale integration (VLSI) circuits
5、 and manufacturing of low-cost receivers through mass production; e) that Digital System DHdescribed in Annex 2 meets most or all of the requirements of Recommendations ITU-R BS.774 and ITU-R BO.789, and that the system has been field tested and demonstrated in more than one country; f) that Digital
6、 System E described in Annex 3, meets most or all of the requirements of Recommendations ITU-R BS.774 and ITU-R BO.789, and that it has been field tested; g) that some systems included in Recommendation ITU-R BO.1130 have a terrestrial component which allows augmentation of the BSS (sound) part, hen
7、ce creating a hybrid satellite/terrestrial system; h) that at the 7th World Conference of Broadcasting Unions (Mexico, 27-30 April 1992), the World Broadcasting Unions unanimously resolved (literal quote): “1. that efforts should be made to agree on a unique worldwide standard for DAB and 2. to urge
8、 administrations to give consideration to the benefits for the consumer of common source and channel coding and implementation of Digital Sound Broadcasting on a worldwide basis at 1.5 GHz”; 2 Rec. ITU-R BS.1547 j) that the World Administrative Radio Conference (Malaga-Torremolinos, 1992) (WARC-92)
9、allocated the band 1 452-1 492 MHz to the BSS (sound) and complementary terrestrial broadcasting service for the provision of DSB. Also, additional footnote allocations were included for specific countries in the band 2 310-2 360 MHz and in the band 2 535-2 655 MHz in Radio Regulations (RR) Nos. 5.3
10、93 and 5.418, noting a) that a summary of the digital systems that allow hybrid operation is presented in Annex 1; b) that condensed system descriptions for Digital System DHand E are given in Annexes 2 and 3; c) that complete systems descriptions of Digital System DHand E are contained in the DSB H
11、andbook, recommends 1 that administrations that wish to implement hybrid satellite/terrestrial DSB services meeting most or all of the requirements as stated in Recommendation ITU-R BS.774 should consider either of the two Digital Systems, DHor E, using Table 1 to evaluate their respective merits. (
12、see Note 1). This should be done in conjunction with the consideration of Recommendation ITU-R BO.1130 for the satellite portion in view of the selection of an overall hybrid BSS (sound) system. NOTE 1 Technology in this area is developing rapidly. Accordingly, if additional systems meeting the requ
13、irements given in Recommendation ITU-R BS.774 are developed, they may also be recommended for use when brought to the attention of the ITU-R. Administrations engaged in the development of DSB systems should make efforts to bring about, as much as possible, harmonization with other systems already de
14、veloped or currently under development. TABLE 1 Performance of Digital Systems DHand E evaluated on the basis of the recommended technical and operating characteristics listed in Recommendation ITU-R BS.774 Characteristics from Recommendation ITU-R BS.774(condensed wording) Digital System DHDigital
15、System E 1. Range of audio quality and types of reception Range is from 16 kbit/s to 128 kbit/s per audio channel in increments of 16 kbit/s. Each 16 kbit/s increment can be split into two 8 kbit/s services. MPEG-2 and MPEG-2.5 Layer III audio coding are used. The system is intended for vehicular, p
16、ortable and fixed reception Range is from 16 kbit/s to 320 kbit/s per audio channel in any increment size. MPEG-2 AAC audio coding is used. The system is intended for vehicular, portable and fixed reception Rec. ITU-R BS.1547 3 TABLE 1 (continued ) Characteristics from Recommendation ITU-R BS.774 (c
17、ondensed wording) Digital System DHDigital System E 2. Spectrum efficiency better than FM FM stereo quality achievable in less than 200 kHz bandwidth; co-channel and adjacent channel protection requirements much less than that for FM. (QPSK modulation with concatenated block and convolution error co
18、rrecting coding) FM stereo quality achievable in less than 200 kHz bandwidth; co-channel and adjacent channel protection requirements much less than that for FM. (CDM based on QPSK modulation with concatenated block and convolutional error correcting coding) 3. Performance in multipath and shadowing
19、 environments The system is a hybrid satellite/terrestrial system designed for diversity reception of a TDM signal via satellite complemented by a terrestrially retransmitted MCM signal. MCM is especially designed for multipath operation. It works by power summing the echoes falling within a given t
20、ime interval System is especially designed for multipath environment. It works on the basis of receiving power summation of multipath using a RAKE receiver. This feature allows the use of on-channel repeaters to cover shadowed areas. Also, more than 1 s blackout will be recovered using segmented con
21、volutional bit wise interleaver 4. Common receiver signal processing for satellite and terrestrial broadcasting Receivers are being developed for TDM-MCM reception in urban environments, including mobile applications. A TDM-MCM signal is radiated from terrestrial transmitters that repeat the satelli
22、te TDM. Circular polarization is used for satellite reception, vertical for terrestrial. External antennas are used for mobile This system is based on the simultaneous reception from both satellite and complementary on-channel repeaters. Allows the use of the same receiver, from the RF front end to
23、the audio and data output Adoption of MPEG-2 systems achieves maximum interoperability among the same kind of digital broadcasting receivers, e.g. ISDB-S, ISDB-T, and DVB-T, DVB-S through using future interconnection mechanism, i.e. IEEE1394 4 Rec. ITU-R BS.1547 TABLE 1 (continued ) Characteristics
24、from Recommendation ITU-R BS.774 (condensed wording) Digital System DHDigital System E 5. Reconfiguration and quality vs. number of programme trade-offs A flexible 16 kbit/s building block multiplex is employed. Up to 8 blocks can be assigned to each broadcast channel in order to trade off programme
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