ITU-R S 739-1992 Additional Methods for Determining If Detailed Coordination Is Necessary between Geostationary-Satellite Networks in the Fixed-Satellite Service Sharing the Same Fetho.pdf
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1、220 CCIR RECWNu739 92 4855212 0518840 208 Rec. 739 RECOMMENDATION 739 ADDITIONAL METHODS FOR DETERMINING IF DETAILED COORDINATION Is NECESSARY BETWEEN GEOSTATIONARYSATELLITE NETWORKS SAME FREQUENCY BANDS IN THE FIXED-SATELLITE SERVICE SHARING THE (Question 49/4) (1992) The CCIR, considering that FSS
2、 networks may share the same frequency bands; that these networks may cause and experience mutual interference; that this mutual interference can be minimized through coordination; that the method described in Recommendation 738 is very conservative; that additional methods may be useful to determin
3、e if detailed coordination is necessary, 4 b) C d) e) recommends 1. administrations concerned, to determine if detailed coordination is necessary: that, to the extent data is available, the following methods be used, by mutual agreement between the - - that the following Notes should form part ofthi
4、s Recommendation. the normalized ATITmethod described in Annex 1; the power density-averaging bandwidth method described in Annex 2; 2. Note 1 -The normalized AT/T method for determining the interference level using the normalized values of the apparent increase in equivalent noise temperature, is b
5、ased on the technique shown in Appendix 29 to the Radio Regulations, appropriately modified to give more accurate results. This approach consists in using a set of predetermined values for ATIT which depends upon the types of wanted and interfering carriers involved, instead of the single 6% value g
6、iven in Appendix 29. Note 2 - The power density-averaging bandwidth method is an extension of the Appendix 29 AT/T method that allows the calculation of the interference power for any interfered-with carrier bandwidth. This method may be applied for determining the need for detailed coordination and
7、 may also be used in more detailed coordination. ANNEX 1 Method of the normalized equivalent noise temperature of the satellite link 1. Introduction This method is based on the technique shown in Appendix 29 to the Radio Regulations and described in Recommendation 738 appropriately modified to give
8、accurate results. To do so, the threshold of 6% used in Appendix 29 is replaced by thresholds which depend on the carriers involved and which meet the CCIR criteria. COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLicensed by Information Handling ServicesCCIR RECMN*739 92 m 4
9、855232 0538843 344 Rec. 739 221 2. Normalized values for the relative increase in the admissible equivalent Link noise temperature 2.1 Definition The method involves determining the overall increase in equivalent link noise temperature due to the various types of transmission in the two networks. Th
10、e normalized values for the relative increase in equivalent link noise temperature are given by: where: No : thermal noise density corresponding to the equivalent noise temperature of the satellite link UNO : ratio of interfering power to the thermal noise density of the wanted carrier B2 : bandwidt
11、h defined by the ratio of the interfering carrier power P to its maximum spectral power density pJm: . 2.2 Values for various carrier types The method for computing Z/No and (AT/T)N is given in Q 3 to 9. The calculation method for (AT/T)N depends on the type of wanted and interfering carriers. Five
12、types are considered: - FDM-FM, - SCPC-FM, - digital SCPC (SCPC-DIG), - wideband digital (DIG-BB), - FM-television (FM-TV). For a given type of wanted carrier and a given type of interfering carrier, the (AT/T)N value obtned (using the method which corresponds to this pair of carrier types) depends
13、on carrier parameters such as bandwidth and coding. In order to limit the necessary computations, each general carrier type is broken down into various sub- headings so that, for each pair of carrier types, the carrier parameters no longer affect (ATION (as long as these parameters lie in the range
14、specified for each type) (see Table 1). Thus (AT/T)N can be determined simply from the knowledge of the type of the two carriers. Carriers are classified according to their type. An initial analysis of the carriers leads to the identification of about 50 different types: - about 20 FDM-FM, character
15、ized by the number of channels and allocated band, - several SCPC-FM, characterized by the allocated band, - about 15 DIG-BB, characterized by the bit rate, type of coding, and number of states, - several SCPC-DIG, characterized by the bit rate, type of coding, and number of states, - several FM-TV,
16、 characterized by the allocated band and energy dispersai characteristics. In order to simplify the presentation of the table of thresholds, the 50 types of carriers have been gathered in The corresponding values of ATIT for each pair of wanted and interfering categories of types of carriers is 12 c
17、ategories as given in Table 2. given in Table 3. COPYRIGHT International Telecommunications Union/ITU RadiocommunicationsLicensed by Information Handling ServicesCCIR RECMN*39 92 4855232 0538842 O80 W 222 DM-FM NC 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 SCPCA No. 23 24 25 26 27 SCPC
18、N No. 28 29 30 31 32 NUM-LB No. 33 34 35 36 37 38 39 40 41 42 43 44 45 FM-Tv No. 46 47 48 49 50 12 1.3 12 2.5 24 2.5 60 2.5 72 60 2.5 5.0 132 5.0 192 5.0 96 7.5 192 7.5 252 7.5 132 10.0 252 10.0 312 10.0 252 15.0 432 15.0 432 20.0 612 20.0 432 25.0 792 25.0 972 25.0 972 36.0 Type o. 020 0.025 0.030
19、0.090 0.180 Type 0.064 0.085 0.128 0.256 0.512 Type 2Q 34 44 8Q 104 174 254 34Q 404 504 120Q 139Q 1474 I Rec. 739 TABLE 1 Standard carrier types NN 12 12 24 60 72 60 I32 192 96 192 252 132 252 312 252 432 432 612 432 792 972 972 NIE 4 4 4 4 4 NE 4 4 4 4 4 4 4 4 4 4 4 4 4 Af Tv.20 TV.30 6.2 Tv.35 5.0
20、 Tv.36 11.0 SCPCA : SCPC (analogue) SCPCN : SCPC (digital) NUM-LB : wideband (digital) NIV : number of channels NIE : number of states Boc. : occupied bandwidth Bo, (MHZ) 1.13 2.2 1.96 2.25 2.25 3.96 4.45 4.51 5.87 6.40 6.74 7.50 8.49 8.96 12.39 12.95 17.99 17.70 20.59 22.34 25.00 35.99 Bo, WZ) 20.0
21、 25.0 30.0 90.0 180.0 Bo, (NZ) 38.0 50.0 150.0 300.0 600.0 Bo, (MHZ) 1.44 1.84 2.25 5.0 5.0 10.2 18.0 20.6 20.0 25.6 75.0 82.0 110.0 Bo, (MHz) 17.5 20.0 30.0 30.0 32.0 - Af : fmin orHz1 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 12.0 fmin
22、 (HZ) 0.3 0.3 0.3 0.3 fm (HZ) 60.0 60.0 108.0 252.0 300.0 252.0 552.0 804.0 408.0 804.0 1052.0 552.0 1052.0 1300.0 1052.0 1796.0 1796.0 2 540.0 1796.0 3 284.0 4 028.0 4 028.0 fmax (Wz) 3.4 3.4 3.4 3.4 3.4 0.3 Bite rate (kbils) 64.0 85.0 128.0 256.0 512.0 Bite rate (Mbils) 2.048 3.072 4.096 8.448 10.
23、0 17.0 24.6 34.368 40.0 50.0 120.0 139.264 147.0 Afst (Hz) 108.5 238.9 163.4 136.5 124.5 270.1 223.5 180.0 359.8 297.2 259.7 430.0 357.4 320.0 576.4 400.2 615.8 453.7 727.3 498.4 410.0 796.7 L (k 12.0 8.5 3.4 Afm (Hz) 159.0 350.0 275.0 276.0 261.0 546.0 529.0 459.0 799.0 758.0 733.0 1020.0 1009.0 10
24、05.0 1627.0 1479.0 2 276.0 1 996.0 2 688.0 2 494.0 2 274.0 4 417.0 5) 3 Afpm Afpnm fbal (MHz) (MHZ) (Hz) 1 .o 2.0 60130 I .o 2.0 50 2.0 4.0 50 2.0 4.0 50125 1 .o 2.0 50 frequency deviation freauencv deviation modrilated carrier Afpm : . 15 MHz Bot( 3 MHz 3 MHz 7 MHz 50 I Boc 15MHz I 39-45 I AfS7 11
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