ITU-R F 497-7-2007 Radio-frequency channel arrangements for fixed wireless systems operating in the 13 GHz (12 75-13 25 GHz) frequency band《工作在13 GHz(12 75-13 25 GHz)频段内的固定无线系统的无线频.pdf
《ITU-R F 497-7-2007 Radio-frequency channel arrangements for fixed wireless systems operating in the 13 GHz (12 75-13 25 GHz) frequency band《工作在13 GHz(12 75-13 25 GHz)频段内的固定无线系统的无线频.pdf》由会员分享,可在线阅读,更多相关《ITU-R F 497-7-2007 Radio-frequency channel arrangements for fixed wireless systems operating in the 13 GHz (12 75-13 25 GHz) frequency band《工作在13 GHz(12 75-13 25 GHz)频段内的固定无线系统的无线频.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、 Rec. ITU-R F.497-7 1 RECOMMENDATION ITU-R F.497-7 Radio-frequency channel arrangements for fixed wireless systems operating in the 13 GHz (12.75-13.25 GHz) frequency band (Question ITU-R 136/9) (1974-1978-1982-1990-1992-1995-1999-2007) Scope This Recommendation provides RF channel arrangements for
2、fixed wireless systems (FWS) operating in the 13 GHz band. The main text of this Recommendation presents an RF arrangement with a channel separation of 28 MHz in the frequency range 12.75-13.25 GHz. Methodologies are provided for subdividing the main 28 MHz wide channels into smaller channels of 14,
3、 7 and 3.5 MHz, as well as for extending the use to 2 28 MHz adjacent channels. The ITU Radiocommunication Assembly, considering a) that the 12.75 to 13.25 GHz band is allocated inter alia to the fixed and mobile terrestrial services; b) that, at these frequencies, fixed wireless systems (FWS) for d
4、igital transmission are feasible with repeater spacings and other features chosen according to rainfall and multipath conditions; c) that the homogeneous frequency pattern based on an interval of 14 MHz (see Recommendation ITU-R F.636) may also be adapted for this frequency band; d) that high capaci
5、ty digital FWS in the synchronous digital hierarchy (SDH) are required in the 13 GHz RF band; e) that digital techniques such as cross-polar interference cancellers (XPIC) may significantly contribute to the cross-polar discrimination improvement factor (XIF, defined in Recommendation ITU-R F.746),
6、thus counteracting rainfall or multipath propagation-induced depolarization; f) that when very high capacity links (e.g. twice Synchronous Transfer Mode-1 (STM-1) are required, further economy may be achieved using system bandwidths wider than the recommended channel separation, associated to high e
7、fficient modulation formats, noting a) that it may no longer be practical, because of the bandwidth of the modulated carrier, to use interleaved frequencies1, 1Additional RF channels had been recommended for analogue systems, interleaved between those of the main pattern, their centre frequencies be
8、ing 14 MHz above those of the corresponding main channel frequencies. They have possibly been maintained for their migration to digital systems; these channels may still be in use. 2 Rec. ITU-R F.497-7 recommends 1 that the preferred RF channel arrangement for FWS with a capacity of 34 Mbit/s or hig
9、her capacity up to 140 Mbit/s or the synchronous bit-rates, operating in the 13 GHz band, should be derived as follows: Let f0be a reference frequency near the centre of the 12.75 to 13.25 GHz band (MHz), fnbe the centre frequency of a RF channel in the lower half of the band (MHz), nf be the centre
10、 frequency of a RF channel in the upper half of the band (MHz), then the frequencies of individual channels are expressed by the following relationship: lower half of the band: fn= f0 259 + 28 n MHz upper half of the band: nf = f0+ 7 + 28 n MHz where: n = 1, 2, 3, 4, 5, 6, 7 or 8. The frequency arra
11、ngement is illustrated in Fig. 1; 2 that, in the section through which an international connection is arranged to pass, 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, in digital systems both horizontal and vertical p
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