ITU-R REPORT BO 1227-2-1998 Satallite-Broadcasting Systems of Integrated services Digital Broadcasting《ISDB的卫星广播系统》.pdf
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1、STD-ITU-R RECMN BO-1227-Z-ENGL 1999 9 4855232 053b398 531 Rep. ITU-R B0.1227-2 1 REPORT ITU-R BO. 1227-2 SATELLITE-BROADCASTING SYSTEMS OF INTEGRATED SERVICES DIGITAL BROADCASTING (Questions ITU-R 101/10 and ITU-R 101/11) (1990-1994-1998) 1 Introduction The progress of digital technology such as mul
2、timedia and digital television has made the general public more and more accustomed to high-quality, reliable and easy-to-use consumer digital devices. This, as a matter of course, has likewise prompted consumers to seek the advantages inherent in the digitalization of broadcasting. Integrated servi
3、ces digital broadcasting (ISDB) enables the transmission of various kinds of information, digitally encoded and systematically integrated in a single digital broadcasting channel. This Report discusses the basic concept and technical considerations of the ISDB system. 2 Concept of ISDB system In the
4、 ISDB system, many kinds of information such as video, audio, teletext, still pictures, facsimile, computer software and even high definition television (HDTV), from different origination sources, are digitally encoded, systematically integrated, and transmitted by a single digital broadcasting chan
5、nel. Digitalization in the ISDB system not only makes possible high-quality transmission but also allows greater flexibility and efficiency in operation. It also makes possible the provision of multimedia services, and simplifies both information selection and access for the user. It could become po
6、ssible at some point in the future to incorporate into ISDB almost all kinds of broadcasting services now or under development. 3 Basic functions It is desirable for ISDB to realize the following functions: 3.1 Flexibility - Many kinds of signals, from high-speed video signals to low-speed data sign
7、als, and the combination of them should be able to be multiplexed on the same transmission channel. Various service signals which have a wide variety of transmission rates should be able to be transmitted. Organization of service should be able to be arranged freely. Signals should be able to be mul
8、tiplexed based on their priorities. The grade of service quality should be able to be selected for each receiver. - - - - 3.2 Extensibility - - New services should be able to be introduced easily in the future. New broadcasters should be able to take part in the broadcasting business easily. 3.3 Int
9、er-operability - - Transcoding among various digital broadcasting systems should be able to be done with ease. Interconnection with other systems such as the communication system, package media, or computer system should be able to be easily established. The multiplex method should be applied to a v
10、ariety of transmission channels with widely-spread transmission capacity. - STD-ITU-R RECMN 80-1227-2-ENGL 1999 48552J2 0536399 438 2 Rep. ITU-R B0.1227-2 3.4 Emission characteristics - - - - - Efficient emission should be realized. Good emission quality, such as robustness against channel errors, s
11、hould be obtained. Stable synchronization should be regenerated. Recovery time should be short after interruption. Signals should be transmitted with minimum delay. 3.5 Reception - - - - - - Programmes should be able to be easily selectable. Services should be able to be multiplexed and demultiplexe
12、d easily. Signal components should be able to be displayed synchronously with each other. Links among services or signal components should be able to be established. Waiting time after selecting channel should be able to be decreased. Common receiver should be able to be realized for all transmissio
13、n media. 3.6 Conditional access - A wide range of applications requiring conditional access should be able to be introduced. 3.7 Other requirements - - Operational costs for broadcasters should be reduced. The receiver circuitry should be made simple and low-cost. 4 Technical considerations 4.1 Emis
14、sion aspects Use of a direct broadcasting satellite is considered an effective medium for ISDB. The service requires a wide bandwidth channel and at present almost all of the terrestrial broadcasting frequencies are in use in some areas. Broadcasting satellites would also more effectively serve ISDB
15、s goal of economically providing consistent high-quality , reliable services over broad geographical areas. A transmission system for satellite ISDB and the results of experimental measurements on this system carried out by Japan are described in Annexes 1 and 2. A comparison between satellite digit
16、al multi-programme transmission systems and the ISDB system is presented in Annex 3. 4.2 In order to meet the functions mentioned in 5 3, it is appropriate that the service transport methods for ISDB have the following functions: - multiplexing a variety of digitized video or audio signals and vario
17、us kinds of data so that the signals are transmitted on a single channel and are received separately at the receiver; optionally, error correction coding for the signals transmitted on various kinds of channels, so that they can be received correctly under various receiving conditions, such as sever
18、e noise or interference; modulating the digital signals, which are integrated into a single bit-stream including the error correcting codes, by means of the multiplexing methods, using appropriate modulation and emission methods based on the charac- teristics of each transmission channel; introducin
19、g conditional access systems which can be applied to each of the various kinds of digital signals, using appropriate conditional access systems; data access method for the transport method mentioned above which enables easy reception of the desired service or programme at the receiving side. Framewo
20、rk of ISDB transport system - - - - 4.3 Service multiplex methods There are basically two service multiplex methods: structured transmission and packet transmission. 4.3.1 Structured transmission method In the structured transmission method, data corresponding to each service are located in fixed po
21、sitions in the transmission frame. This method has the following characteristics: - it allows for optimum transmission of each service, assigning it to an appropriate frame area and position according to the required transmission rate; the desired data can be easily separated, because data can be id
22、entified based on their position in the frame; transmission efficiency is high if the transmission rate of each service is constant; it has poor extensibility, because it is difficult to accommodate new services once the system has been specified. - - - 4.3.2 Packet transmission method A packet cons
23、ists of a header and data field for each particular service. The header indicates data attributes. In the packet transmission method, the packet is located arbitrarily in the transmission frame. This method has the following characteristics: - - - various services can be specified with a common tran
24、smission protocol and handled in the same manner; it requires data separation processing to select the desired packets from all transmitted packets; transmission efficiency is high, because it allows for optimum transmission of variable bit rate services, thus compensating for the somewhat higher ov
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