ITU-R SNG 1007-1-1995 Uniform Technical Standards (Digital) for Satellite News Gathering (SNG)《卫星新闻采集统一技术标准(数字)》.pdf
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1、ITU-R RECMN*SNG. 1007-1 95 = 4855212 0525832 368 m Re. ITU-R SNG.1007-1 1 RECOMMENDATION ITU-R SNG. 1007- 1 * UNIFORM TECHNICAL STANDARDS (DIGITAL) FOR SATELLITE NEWS GATHERING (SNG) (Question -R 22814) (1993-1995) The Radiocommunication Assembly, considering a) that Satellite News Gathering (SNG) u
2、sing portable transmitting earth stations is essential for broadcast operations and provides a valuable method of transmission for the rapid acquisition and broadcasting of news events; b) that to facilitate the international coverage of news and to optimize the design of equipment, it would be desi
3、rable to adopt uniform technical standards for digital SNG, taking into account the possibility for interference to other satellites and systems and the need to be interoperable; c) that digital SNG requirements include various communication and transmission support systems and that it is necessary
4、to provide, preferably on the same satellite transponder, auxiliary signals for the operation of digital SNG earth stations; d) that digital SNG earth stations operate mainly in the fixed-satellite service, and should comply with the relevant provisions of the Radio Regulations, and any relevant dom
5、estic regulations requirements; e) that digital SNG transmissions should conform to certain technical criteria with regard to off-axis e.i.r.p. and other antenna characteristics; f) that the technical characteristics of an appropriate identification signal should be specified; g) that digital SNG vi
6、deo terminals could require less transmission power and can use smaller antennas and lighter equipment than analogue SNG video terminals; h) that digital SNG video terminals could utilize less power and bandwidth from the satellite; j) that digital SNG transmissions have lower interference potential
7、 than analogue transmissions, recommends that digital SNG earth-station transmissions should comply with the uniform technical standards as described that digital SNG earth stations equipped to provide two-way satellite communications circuits should comply 1 in Annex 1 ; 2 with Recommendation ITU-R
8、 SNG.77 1. * This Recommendation should be brought to the attention of Radiocommunication Study Groups 10 and 11. ITU-R RECMN*SNG- 1007-1 75 m 4855212 0525833 2T4 m 2 Rec. WU-R SNG.1007-1 ANNEX 1 Technical parameters applicable to digital SNG terminals 1 General performance A digital SNG terminal mu
9、st be able to be rapidly deployed, to transmit (with a minimum of impairments) vision and associated sound or sound programme signals, to provide limited receiving capability to assist in the pointing of the antenna and to monitor (where possible) the transmitted signals, and to provide two-way comm
10、unications for operation and supervision. Digital SNG terminals using a flat (usually phased array antenna) or parabolic antenna consist of the following main units: - - - antenna and feed system with polarization adjustment, antenna mount with azimuth/elevation adjustment, optional antenna tracking
11、 system. (in the case of a flat antenna automatic tracking may be achieved by use of a beacon signal. The satellite uplink and downlink contours must overlap. In the case of a loss of the beacon signal, specific procedures should be initiated in order to avoid interference to other systems), high po
12、wer amplifier/solid state power amplifier (HPNSSPA) for multiplexed visionhounddata channels, receiver unit in order to assist antenna pointing, basebandcoding and modulation equipment and IF to RF upconverter, two-way communication equipment for voicddata, - - - - - system locailremote control pane
13、l, - optional power generator. 2 Transmission performance requirements The baseband digital signal shall be transmitted with a minimum of impairment by adhering to the performance requirements as described in 8 3. 3 RF performance requirements 3.1 Off-axis e.i.r.p. density Shall comply with Recommen
14、dation ITU-R S.524 or the satellite operators requirements, whichever is more stringent. 3.2 Polarization discrimination Some satellites use overlapping channels with orthogonal polarization discrimination. The cross-polarization design for linearly polarized antennas should be better than 30 dB wit
15、hin the -1 dB points of the main axis of the beam and 25 dB elsewhere. 3.3 E.i.r.p. The necessary e.i.r.p. of the digital SNG terminal depends on the required uplink carrier-to-noise ratio C/N and satellite Gfl. However, e.i.r.p. is often limited by the off-axis e.i.r.p. density limits as indicated
16、in 8 3.1. 3.4 Necessary RF bandwidth The necessary RF bandwidth for digital SNG can be determined by taking into account the RF spectrum of the digital signal and the number of associated carriers for auxiliary circuits. ITU-R RECMN*SNG. 1007-1 95 m 4855212 0525834 130 Rec. ITU-R SNG.1007-1 3 3.5 Ou
17、t-of-band e.i.r.p. density The system should be designed with a sufficient output back-off of the amplifier in order to limit the out-of-band emissions due to the output amplifier non-linearity. The exact limit for the permitted out-of-band e.i.r.p. density is determined by the satellite operator. 4
18、 Modulation characteristics The modulation of the carrier with the multiplexed vision, sound and auxiliary data signal shall be fully compatible with the specifications as defined below. The main characteristics are: - - FEC convolution encoding, - - optional outer coding, - coherent QPSK modulation
19、 (other modulation methods may be used), soft decision decoding, e.g. Viterbi, scrambling of data for energy dispersal. 5 Range of bit rates SNG is primarily a contribution link, and as such, the integrity of the original source signal must be maintained throughout the satellite link. For contributi
20、on quality, at least 34 Mbit/s is recommended (see IT-T Recommen- dation J.8 1). It is also desirable to minimize the number of coding/decoding processes. Where possible, large bit rate reduction should be avoided at the beginning of the chain in order to enable good overall performance. The use of
21、lower bit rates (e.g. WEG-2, main profile at main level) will allow small terminals, and will allow to operate them with low power. Equipment with variable or adaptive transmission bit rates can optimize operating conditions. In such cases, the system can be optimized to allow for the best operating
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