ITU-R REPORT BS 1203-1-1994 Digital Sound Broadcasting to Vehicular Portable and Fixed Receivers Using Terrestrial Transmitters in the UHF VHF Bands (138 pp)《UHF VHF波段中地面发射机用数字声音广播.pdf
《ITU-R REPORT BS 1203-1-1994 Digital Sound Broadcasting to Vehicular Portable and Fixed Receivers Using Terrestrial Transmitters in the UHF VHF Bands (138 pp)《UHF VHF波段中地面发射机用数字声音广播.pdf》由会员分享,可在线阅读,更多相关《ITU-R REPORT BS 1203-1-1994 Digital Sound Broadcasting to Vehicular Portable and Fixed Receivers Using Terrestrial Transmitters in the UHF VHF Bands (138 pp)《UHF VHF波段中地面发射机用数字声音广播.pdf(138页珍藏版)》请在麦多课文档分享上搜索。
1、-1- Rep. ITU-R BS.1203-I REPORT ITU-R BS.1203-1 DIGITAL SOUND BROADCASTING TO VEHICULAR, PORTABLE AND FIXED RECEIVERS USING TERRESTRIAL TRANSMITTERS IN THE UHFNHF BANDS (1 990- 1994) This Report contains background and descriptive material for Recommendation ITU-R BS.774 entitled “Digital sound broa
2、dcasting to vehicular, portable and fixed receivers using terrestrial transmitters in the UHFNHF bands“. 1. Introduction Digital techniques have been used in sound programme production and transmission by some broadcasters for many years now, and more recently have become cheap enough to be introduc
3、ed into the domestic consumer market, leading to wider public appreciation of high-quality sound, albeit via non-broadcast digital media. At the same time, there is rapidly growing congestion in the VHF/FM radio bands in many countries; thus the FM broadcasting services, which can deliver unimpaired
4、 sound quality into the home, are under threat of erosion of the quality deliverable. Overcrowding will inevitably increase the levels of interference which must be tolerated, particularly for vehicular and portable receivers, which do not benefit from elevated, directional, receiving antennas, usua
5、lly assumed in planning service coverage. receivers, the solution for the future development of sound broadcasting is to provide an entirely new digital sound broadcasting service, designed at the outset to meet all the reception requirements of the diverse listening audiences. Also, a complete digi
6、tal sound programme chain can be established from studio to domestic receiver. In contrast to existing sound broadcasting systems, the new system has to provide unimpaired sound broadcast reception to fixed, portable and mobile receivers. The requirement for mobile reception necessitates entirely ne
7、w transmission methods which have been defined and are described below. Although VHF/FM services can still provide excellent service to properly-installed fixed This Report describes the requirements for digital sound broadcasting to vehicular, portable and fixed receivers using terrestrial transmit
8、ters, the techniques employed in the digital sound broadcasting system, and considers relevant planning parameters and sharing considerations. The Report also makes reference to the terrestrial part and common system characteristics of the mixed satellite/terrestrial digital sound broadcasting servi
9、ce concept as well as the hybrid delivery concept. The mixed satellite/terrestrial service concept is based on the use of the same frequency band by both satellite and terrestrial broadcasting services to the same receiver. The hybrid delivery concept is based on the use of low power terrestrial “ga
10、p-filler“ to improve the satellite coverage. Both concepts are made possible by the techniques employed in the digital sound broadcasting system and are described in more detail in Report ITU-R B0.955. -2- Rep. ITU-R BS.1203-I Most of the information included in this Report is based on studies and t
11、ests undertaken in Canada, Germany, France, the Netherlands, United Kingdom, Sweden and by the EBU in association with the Eureka-147 Project using the system concept described in Annex 1-A. systems (see Annex 2). Recent efforts have been undertaken to explore other possible digital sound broadcasti
12、ng 2. Service and system requirements into account. The system shall be intended for fixed as well as portable and vehicular reception. The list of system requirements applies to terrestrial, cable, satellite as well as mixedhybrid satellite/terrestrial delivery concepts. The requirements are: In de
13、fining a digital sound broadcasting system, the following requirements shall be taken 2.1 Sound quality levels - High quality stereo sound of two or more channels with subjective quality indistinguishable from high quality consumer digital recorded media (“CD quality“). 2.2 Sound control signals - T
14、ransmission of control information on sound representation (loudness, dynamic range compression, matrixing, etc.). Service configurations - High-quality channel stereophonic sound. - High-quality monophonic sound. - For special applications, the possibility of adding further sound channels to the ba
15、sic system (for the universal multi-channel stereophonic sound system as defined in Recommendation ITU-R BS.775). Value added services with different data capacities and delivery time (e.g. traffic message channel, business data, paging, still picture/graphics, 1.5 Mbit/s video/sound multiplex, futu
16、re Integrated Services Digital Broadcasting (ISDB). Flexible allocation/reallocation of services, without affecting continuing services. - - 2.4 Service delivery Use of common signal processing in receivers for: a) local, sub-national and national terrestrial VHFLJHF networks; b) mixed use of terres
17、trial and national/supernational UHF satellite services; c) cable. It would be advantageous, in some countries, to design the system and plan the service in such a way that a common receiver could be used for all the above delivery concepts. -3- Rep. ITU-R BS.1203-I 2.5 2.6 2.7 2.8 2.9 3. 3.1 Servic
18、e information - Radio programme data related to each programme signal (programme labelling, programme delivery control, copyright control, conditional access, dynamic programme linking, services for the hearing-impaired). Multiplex system information (simple programme or service identification, sele
19、ction and linking). - Interface - Recording capability of sound signals (in bit-rate reduced form) and related data. This implies recording the complete programme signal including its programme-related data, and the ability to access small blocks of data in the encoded signal. Data interface capabil
20、ity to information technology equipment (ITE) and communication networks. - Service availability - - - Subjectively acceptable failure characteristics. - Vehicular, portable and fixed reception. High-coverage availability in location and time. High immunity to multipath (long and short delay) and Do
21、ppler effect (for mobile receivers). Trade off between extent of coverage for a given emission power, service quality and number of sound programmes and data services. - Spectrum efficiency - High spectrum utilization efficiency (better than FM, maximize frequency reuse and single frequency networki
22、ng, minimize sharing constraints with other services) Multiple programme service provision within a contiguous frequency band. - Complexity - Low-cost basic receiver configuration - System design considerations Use simple, non-directional receiving antenna appropriate to vehicular and portable recep
23、tion. Channel characteristics The design of both a satellite and a terrestrial digital sound broadcasting system is strongly dependent on the factors affecting the propagation characteristics of the path to the vehicular receiver. The propagation path in the VHFUHF frequencies is subject to attenuat
24、ion by shadowing due to buildings and other obstacles, and to multipath fading due to diffuse scattering from the ground and nearby obstacles such as trees, etc. The shadowing andmultipath effects depend on the operating frequency, the elevation angle to the transmitter and the type of environment i
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