ITU-R SF 1006-1993 Determination of the Interference Potential between Earth Stations of the Fixed-Satellite Service and Stations in the Fixed Service《固定卫星业务站和固定业务站之间潜在干扰的确定》.pdf
《ITU-R SF 1006-1993 Determination of the Interference Potential between Earth Stations of the Fixed-Satellite Service and Stations in the Fixed Service《固定卫星业务站和固定业务站之间潜在干扰的确定》.pdf》由会员分享,可在线阅读,更多相关《ITU-R SF 1006-1993 Determination of the Interference Potential between Earth Stations of the Fixed-Satellite Service and Stations in the Fixed Service《固定卫星业务站和固定业务站之间潜在干扰的确定》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、CCIR RECflN*FLOOb 93 g855212 0520793 231 W Rec. ITU-R SF.1006 31 SECTION 4/9B: COORDINATION AND INTERFERENCE CALCULATIONS RECOMMENDATION ITU-R SF. 1006 DETERMINATION OF THE INTERFERENCE POTENTiAL BETWEEN EARTH STATIONS OF THE FIXEDSATELLITE SERVICE AND STATIONS IN THE FIXED SERVICE (Questions ITU-R
2、3U4 (1990) and 109/9 (1990)* ( 1993) The ITU Radiocommunication Assembly, considering a) that when the coordination area of an earth station, as established by the methods given in Recommendation IT-R IS.847*, includes territory of another administration, mutual consultation between the administrati
3、ons concerned is required; b) that each station in the fixed service within the coordination area must be examined to determine whether it will experience or cause more than a permissible amount of interference; C) interference evaluation; d) allowing for typical terrain and shielding, are achievabl
4、e (see Fig. I); e) administrations concerned; 0 analysis may nonetheless be of value to some in the detailed coordination and interference evaluation, that Recommendation -R PN.452* provides the requisite propagation bases for individual point-to-point that experience has shown that, in many instanc
5、es, separation distances as small as a few kilometres, when that the methodology for determining the level of interference is a matter for agreement between the that guidance to administrations on the detailed determination of these levels for performing a preliminary recommends that the methods des
6、cribed in Annex 1 may be used for assessing interference potential between earth 1. stations and specific stations in the fixed service within the coordination area. Determination of the interference potential between fixed satellite service earth stations and stations in the fixed service The follo
7、wing method may be used for assessing whether interference between earth stations and specific terrestrial stations can be expected to exceed a pre-determined level. 1. Preliminary elimination procedure The method of calculating coordination area as described in Recommendation ITU-R IS.847* assumes
8、certain reference values for the parameters of terresuial stations. A very large percentage of the actual or planned terrestrial stations within a coordination area can be eliminated from further consideration when their actual or planned parameters are known, by using the auxiliary contours as defi
9、ned in Appendix 28 of the Radio Regulations (Geneva, 1979). * * Former CCIR Questions 3U4 and 109/9. Former CCIR Recommendations 847 and 452. CCIR RECMN*100b 93 4855212 0520794 178 32 Rec. ITU-R SF.1006 One set of contours is associated with values of the terrestrial station interference sensitivity
10、 factor, S which is defined as: where: G, : net gain (dBi) (i.e. the gain of the antenna itself minus the feeder loss (dBi) relative to isotropic; where the feeder loss is not known, its value should be assumed to be O dB) of the receiving antenna of the terrestrial station in the direction of the e
11、arth station permissible interference power (dBW) in the reference bandwidth to be exceeded for no more than p percent of the time at the receiver input of a station suffering interference (in this case a terrestrial station). P,(p) : The other set of contours is associated with values of terrestria
12、l station e.i.r.p.: where: Pi : available transmitting power (dBW) in reference bandwidth B at the input to the antenna of an interfering station (in this case a terrestrial station) Gi : gain (dBi relative to isotropic) of the transmitting antenna of the terrestrial station in the direction of the
13、earth station. Each terrestrial station which is located within the coordination area may now be examined to determine for terrestrial stations which may be receiving interference from the earth station, the interference sensitivity factor in the direction of the earth station should be determined.
14、If this value is less than that associated with the nearest contour outside which the station is located, then the station may be excluded. Otherwise, detailed calculations as described in b 2 must be carried out; for terrestrial stations which may be causing interference to the earth station, the a
15、ctual e.i.r.p. in the direction of the earth station should be determined. If this value is less than that associated with the nearest contour outside which the terrestrial station is located, then the station may be excluded. Otherwise, detailed calculations as described in 0 2 must be carried out.
16、 The above method has been based on the assumption that the number of interference entries assumed in Recommendation ITU-R IS.847* for the calculation of the auxiliary contours is not exceeded. Terrestrial stations eliminated by the above procedure from further consideration with regard to great cir
17、cle propagation mechanisms need, nevertheless, to be considered further with regard to rain scatter propagation, when they lie within the rain scatter coordination area. whether it can be excluded from further considerations: - - 2. Determination of interference potential due to great-circle propaga
18、tion mechanisms, mode (1) Terrestrial stations located within the coordination area, which cannot be eliminated from further consideration by the method described in 4 1 must be subjected to a more detailed analysis. * Former CCIR Recommendation 847. CCIR RECMN+LOOb 93 m 4855212 0520795 004 m RC. mu
19、-R SF.1006 33 For each terrestrial station it is necessary to compare the available basic transmission loss for the path and the minimum permissible basic transmission loss value, at which interference is negligible for two time percentages on the one hand equal to 20% of the time pl, and on the oth
20、er, a low percentage of the time ( 1%) designatedpz. Interference is negligible when, for both time percentages, the available basic transmission loss for the path exceeds the minimum permissible basic transmission loss. 2.1 Level of maximum permissible inegerence The level of permissible interferen
21、ce power at the input of the receiver of a terrestrial or an earth station may, in the most general form, be expressed as the unwanted radio-frequency power Pr from any one of n sources of interference, in a reference bandwidth B, to be exceeded for not more than specified percentages of the time, P
22、i. For most practical purposes two such percentages of the time will be adequate; one, pl, chosen to reflect normal (near median) conditions for which interference contributions from all interference sources may be assumed to occur simultaneously and to add on a power basis, given by: Pr(p1) = lOlog
23、(kTrB) + J - W dBW (3) and another p2, chosen to reflect significantly enhanced (small percentages of the time) interference conditions, for which interference contributions from all interfering sources may be assumed to occur non-simultaneously and to add on a percentage-of-the-time basis, given by
24、: Pr(P2 1 n2) = 10 lg (k T,B) + 10 log (10 - 1) + NL- w dBW (4) M,/ 10 where: Pi, P2 : nl : 112 : k: Tr : B: J: Ms : NL : W: percentages of the time during which the interference from all sources may exceed the permissible level; pl represents long-term (pl 2 1%) and p2 short-term conditions (p2 I 1
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