ITU-R BO 793-1992 Partitioning of Noise between Feeder Links for the Broadcasting-Satellite Service (BSS) and BSS Down Links《广播卫星业务(BSS)馈线链路和BSS下行链路之间噪音的分隔》.pdf
《ITU-R BO 793-1992 Partitioning of Noise between Feeder Links for the Broadcasting-Satellite Service (BSS) and BSS Down Links《广播卫星业务(BSS)馈线链路和BSS下行链路之间噪音的分隔》.pdf》由会员分享,可在线阅读,更多相关《ITU-R BO 793-1992 Partitioning of Noise between Feeder Links for the Broadcasting-Satellite Service (BSS) and BSS Down Links《广播卫星业务(BSS)馈线链路和BSS下行链路之间噪音的分隔》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、CCIR RECMN*793 92 4855232 0520034 537 = 7 For the purposes of planning, the WARC-BS-77 adopted a maximum reduction of 0.5 dB of the overall carrier-to-noise (GIN) ratio, to represent the contribution of the feeder link to the CIN ratio for 999 of the worst month. This corresponds to a difference of
2、about 10 dB between the carrier-to-noise ratios of the down links and feeder links. According to an EBU study, the contribution of the noise resulting from the feeder link may be rendered negligible by adopting a relatively small margin in the carrier-to-noise ratio of the down link. This study cons
3、idered the feeder link and down link. I the case of automatic gain control (AGC) in the satellite and was based on a statistical analysis of the attenuations on Numerical applications have been made assuming that the attenuations (in dB) follow a log-normal relationship for which the parameters fit
4、measurements made in Europe. It is seen, first, that the results obtained assuming either total correlation or total independence between feeder-link and down-link fadings, are more or less identical. The influence of a margin of 0.5 dB on the down link, however, is crucial. The improvement due to t
5、his margin is better than that obtained by dimensioning the C/N ratio of the feeder link for 99.99 of the worst month instead of for 99%. Hence, if a down-link C/N ratio of 14 dB for 99%. of the worst month is assumed, the noise contribution from the feeder link to the overall circuit causes the ove
6、rall link CIN to drop below 14 dB, 50% to 10% Rec. 793 145 RECOMMENDATION 793* PARTITIONING OF NOISE BETWEEN FEEDER LINKS FOR AND BSS DOWN LINKS* (Questions 83/11, 86/1 i) THE BROADCASTING-SATELLITE SERVICE (BSS) ( 1992) The CCIR, considering that the broadcasting-satellite service (BSS) is normally
7、 expected to provide service to a relatibely large that in minimizing the effects of feeder-link noise on the overail link noise budget the cost and complexity of that the satellite output e.i.r.p. is maintained at the nominal output level during feeder-link fades by that higher up-link power requir
8、ements would affect only a few feeder-link stations; that in terms of availability, rain fades on the down link would only have a local affect on the performance that a further degradation of the overall link due to thermal noise occurs due to the non-linearity of the a) geographical area encompassi
9、ng a large population of receivers; b the BSS receiver will be minimized; c) employing techniques such as automatic gain control (AGC); d) e) whereas rain fade on the feeder link would affect performance over the whole service area; 0 satellite high power amplifier coupled with WM conversion (see An
10、nex l), recommends that as a guide to system design, for a given service availability objective for analogue-modulated emissions in the BSS, the apportionment of the down-link noise contribution to the feeder-link noise contribution should be of the order of 10: 1 (see Annex 1). ANNEX 1 Partitioning
11、 of noise between feeder links and down links * This Recommendation should be brought to the attention of Study Group 4. Note from the Director, CCIR - Report 952-2 ($ 3.2 and 3.3) was used in preparing Annex 1. * CCIR RECMN*793 92 m 4855212 0520015 475 m 146 Rec. 793 more often (depending on whethe
12、r the feeder link is dimensioned to given CIN ratio of 24 dB for 99% or 99.9% of the worst month). If account is taken of the 0.5 dB margin on the down link, the perccntngc of the time during which the overall CIN drops below 14 dB, including the noise contribution of the feeder link is still smalle
13、r than the specified 1 % of the worst month in both cases. This result cotifms the suitability of the choice, made by the WARC-BS-77, to take account of the feeder link by means of such a margin, even at frequencics of the order of 18 GHz. Similar studies were conducted in C,snlida on the effects of
14、 rain attenuation and satellite transponder characteristics as related to the partitioning of the noise contributions on thc feeder links and down links in 8 broadcasting-satellite service. Some of the results can be found in Fig. 1, wlierc the siune assumptions as in the above-mentioned study were
15、made. The curves in this figure represent the degradation of the down-link CIN due to the noise contribution from the feeder link, (CINd - CINJ as a function of the difference between the GIN of the feeder link and the CIN of the down link (CINU - CINd). Full correlation and independcnec of the fadi
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