ITU-R F 1095-1994 Procedure for Determining Coordination Area between Radio-Relay Stations of the Fixed Service《固定业务无线中继站之间确定协调区的程序》.pdf
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1、Rec. ITU-R F.1095 1RECOMMENDATION ITU-R F.1095A PROCEDURE FOR DETERMINING COORDINATION AREA BETWEENRADIO-RELAY STATIONS OF THE FIXED SERVICE(Question ITU-R 129/9)(1994)Rec. ITU-R F.1095The ITU Radiocommunication Assembly,consideringa) that in some neighbouring countries the same frequency band may b
2、e shared by fixed radio-relay stations;b) that the accuracy of interference considerations should be as high as necessary;c) that not all of the data needed to be exchanged between concerned countries may be available;d) that the concept of coordination area would be useful in avoiding undue interfe
3、rence between fixed terrestrialstations;e) that some guidelines to determine such a coordination area would be useful;f) that some existing procedures to determine the coordination area for fixed terrestrial services may identifystations for which detailed interference studies may not be required,re
4、commends1. that with the agreement of administrations concerned: the procedure described in Annex 1 may be used as a guide to determine the frequency coordination areafor interference studies between stations of the fixed service; the maximum level of interference and the achievable accuracy of coor
5、dination distances referred to inAnnex 1 have to be assessed.ANNEX 1A procedure for determining coordination area betweenradio-relay stations of the fixed service1. IntroductionThis Annex describes a procedure for using the concept of coordination area for fixed radio-relay systems. Itpresents a met
6、hodology for determining the number of stations that need to be coordinated and the probability ofinterference that may exist between those stations.Because of the directivity of microwave antennas, a keyhole concept may be used for the development of acoordination distance analysis procedure. The k
7、eyhole concept takes into account the larger distance along the mainbeam (keyhole zone) of a microwave station, and the probability of interference over this region. It then follows that theregion outside the keyhole zone (the area off the main beam) requires shorter coordination distances as shown
8、in Fig. 1.The specific numerical figures for coordination distances for the keyhole zones and off-main-beam regions depend onthe types of antennas and the frequencies used.2 Rec. ITU-R F.1095Interfered-with station Keyhole distanceCoordination distance foroff-keyhole regionKeyhole regionFIGURE 1Basi
9、c concept for keyhole coordination distanceD01FIGURE 1/F.1095.D01 = 7 CM2. Calculating coordination distanceThe coordination distance can be obtained by solving the relation between the power of the interfering signalreceived by the victim station and the distance from the interfering station,I = PT
10、+ GR DR() L(d) + GT DT () (1)where:I : power at distance d originating from the interfering station (dBm)PT: the maximum transmitting power level (dBm) in the reference bandwidth at the input to the antenna ofthe interfering stationGT: gain (dBi) of the transmitting antenna of the interfering statio
11、nGR: gain (dBi) of the receiving antenna of the interfered-with stationDT: antenna discrimination (dB) of the transmitting antenna (at different angles )DR: antenna discrimination (dB) of the receiving antenna (at different angles )L(d) : total path loss (dB) for the Earths curvature, with K = 1.33.
12、As an example for intersystem radio-relay interference analysis, a C/I ratio of greater than or equal to 65 dBcan be assumed and expressed as follows:C I 65mmmmmmdB (2)where:C : nominal received desired signal power (dBm)I : maximum tolerable interfering power (dBm)C PT+ GR DR() L(d) + GT DT () + 65
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