ITU-R F 382-8-2006 Radio-frequency channel arrangements for fixed wireless systems operating in the 2 and 4 GHz bands《运行于2和4GHz频段的固定无线系统的射频信道配置》.pdf
《ITU-R F 382-8-2006 Radio-frequency channel arrangements for fixed wireless systems operating in the 2 and 4 GHz bands《运行于2和4GHz频段的固定无线系统的射频信道配置》.pdf》由会员分享,可在线阅读,更多相关《ITU-R F 382-8-2006 Radio-frequency channel arrangements for fixed wireless systems operating in the 2 and 4 GHz bands《运行于2和4GHz频段的固定无线系统的射频信道配置》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、 Rec. ITU-R F.382-8 1 RECOMMENDATION ITU-R F.382-8 Radio-frequency channel arrangements for fixed wireless systems*operating in the 2 and 4 GHz bands (Question ITU-R 136/9) (1956-1959-1963-1966-1970-1982-1986-1990-1991-1997-2006) Scope This Recommendation provides radio-frequency channel arrangement
2、s for fixed wireless systems operating in the 2 GHz band (1 700-2 100 MHz or 1 900-2 300 MHz range) and the 4 GHz band (3 800-4 200 MHz range). The channel spacing recommended in the main text is 29 MHz with possible use of the interleaved 14 MHz spacing channels. Another channel arrangement with 28
3、 MHz channel spacing in the range 3 700-4 200 MHz is provided in the Annex. Other arrangements used in some countries are also described in the Notes. The ITU Radiocommunication Assembly, considering a) that it is sometimes desirable to be able to interconnect fixed wireless systems on international
4、 circuits at radio frequencies in the 2 and 4 GHz bands; b) that, in a frequency band 400 MHz wide, it may be desirable to interconnect up to six go and six return radio-frequency channels; c) that economy may be achieved if at least three go and three return channels can be interconnected between s
5、ystems each of which uses common transmit-receive antennas; d) that many interfering effects can be substantially reduced by a carefully planned arrangement of the radio frequencies in fixed wireless systems employing several radio-frequency channels; e) that it may sometimes be desirable to interle
6、ave additional radio-frequency channels between those of the main pattern; f) that the use of bit rates of 34 Mbit/s may be possible in the 2 GHz band; g) that the use of bit rates of 2 34 Mbit/s or 2 45 Mbit/s or 140 Mbit/s or synchronous digital hierarchy bit rates is possible in the 4 GHz band; h
7、) that for these digital radio systems, further economies are possible by accommodating up to six go and six return channels on a single antenna; j) that frequency block arrangements specifically for fixed wireless access systems in the range 3 400-3 800 MHz are given in Recommendation ITU-R F.1488;
8、 *The term “fixed wireless systems” used in this Recommendation means point-to-point radio relay systems. 2 Rec. ITU-R F.382-8 k) Resolution 716 of the World Radiocommunication Conference (Geneva, 1995) (WRC-95) urges administrations to ensure that frequency assignments to new fixed service systems
9、do not overlap with the 1 980-2 010 MHz and 2 170-2 200 MHz bands in all three Regions and the 2 010-2 025 MHz and 2 160-2 170 MHz bands in Region 2 mobile-satellite service (MSS) allocations, recommends 1 that the preferred radio-frequency channel arrangement for up to six go and six return channel
10、s for medium and high-capacity fixed wireless systems, in the 2 and 4 GHz bands should be as shown in Fig. 3 and should be derived as follows: Let f0 be the frequency of the centre of the band of frequencies occupied (MHz), fnbe the centre frequency of one radio-frequency channel in the lower half o
11、f the band (MHz), nf be the centre frequency of one radio-frequency channel in the upper half of the band (MHz), then the frequencies in MHz of individual channels are expressed by the following relationships: lower half of the band: fn= f0 208 + 29 n upper half of the band: nf = f0+ 5 + 29 n where:
12、 n = 1, 2, 3, 4, 5 or 6; 2 that in a section over which the international connection is arranged all the go channels should be in one half of the band, and all the return channels should be in the other half of the band; 3 that for adjacent radio-frequency channels in the same half of the band, diff
13、erent polarizations should preferably be used alternately; i.e. the odd numbered channels in both directions of transmission on a given section should use H(V) polarization, and the even numbered channels should use V(H) polarization, as shown in Fig. 1 below: NOTE 1 When antennas for double polariz
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