ITU-R F 1669-1-2007 Interference criteria of fixed wireless systems operating in the 37-40 GHz and 40 5-42 5 GHz bands with respect to satellites in the geostationary orbit《相对于运行在3.pdf
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1、 Rec. ITU-R F.1669-1 1 RECOMMENDATION ITU-R F.1669-1*Interference criteria of fixed wireless systems operating in the 37-40 GHz and 40.5-42.5 GHz bands with respect to satellites in the geostationary orbit (Question ITU-R 127/9) (2004-2007) Scope Recommendation ITU R F.1669 provides the interference
2、 criteria to protect fixed wireless systems (FWSs) from interference produced by GSO satellites in the 38 and 40 GHz bands. It includes two sets of criteria for, on the one hand, some links in certain broadband wireless access applications and, on the other hand, all other FWSs. The ITU Radiocommuni
3、cation Assembly, considering a) that it is desirable to determine the protection criteria of fixed wireless systems (FWSs) operating in the 38 GHz (37-40 GHz) and 40 GHz (40.5-42.5 GHz) bands with respect to interference from geostationary-satellite (GSO) systems operating on a co-primary basis; b)
4、that in interference situations involving GSO space stations, fixed service (FS) systems are potentially exposed to high levels of interference for some geometric cases which could affect the performance or availability of these systems; c) that the FS link design in the 38 and 40 GHz bands is contr
5、olled by rain attenuation, which can be modelled using Recommendation ITU-R P.530; d) that in the 38 and 40 GHz bands, some administrations employ automatic transmit power control (ATPC) on some FS links and that such use will increase the susceptibility of these links especially with regard to shor
6、t-term interference; e) that some FS links employing small net fade margins may not be fully protected from interference from GSO satellite systems without unduly constraining those services; f) that typical FS links using ATPC will require tighter protection criteria than those needed for FS links
7、with large fade margin that do not use ATPC; g) that no pointing restrictions apply to FS systems in the 38 and 40 GHz bands, and that such restrictions are not practicable in view of the large-scale, cost-sensitive deployment, recognizing a) that the bands 37.5-40 GHz and 40.5-42.5 GHz are shared o
8、n a co-primary basis with the FSS, and that the ITU-R established Recommendation ITU-R SF.1573, on pfd levels that are required to protect the FS in these bands; *This Recommendation should be brought to the attention of Radiocommunication Study Groups 3, 4 and 7. 2 Rec. ITU-R F.1669-1 b) that the a
9、pplication of the criteria in this Recommendation is not intended to lead to a revision of Recommendation ITU-R SF.1573, noting a) that the representation of the interference produced by GSO satellites on a FS receiver versus the whole azimuth of this FS receiver presents, as shown in Fig. 2, two in
10、terference peaks for two particular FS azimuth for which, depending on the geometry of the FS link, the pointing direction of this link passes through the GSO arc, recommends 1 that the following interference criteria, defining an interference mask such as described in Fig. 1, should be used to prot
11、ect the fixed service systems from interference produced by GSO satellites from various services in the 37-40 GHz and the 40.5-42.5 GHz bands on a co-primary basis: 1.1 for fixed wireless systems in general: 1.1.1 the interference-to-noise ratio (I/N) at the input of the FS receiver should not excee
12、d 10 dB except within 15 separation from the azimuth where the FS antenna main beam intersects with the GSO arc (Notes 1 and 2); 1.1.2 for the FS azimuth within this 15 range, interference-to-noise ratio at the input of the FS receiver can be accepted up to +4 dB for the azimuth corresponding to the
13、 peaks (Notes 1 and 2); 1.2 for some links in certain BWA applications: 1.2.1 the interference-to-noise ratio (I/N) at the input of the FS receiver should not exceed 10 dB except within 5 separation from the azimuth where the FS antenna main beam intersects with the GSO arc (Notes 1 and 2); 1.2.2 fo
14、r the FS azimuth within this 5 range, interference-to-noise ratio at the input of the FS receiver can be accepted up to 0 dB for the azimuth corresponding to the peaks (Notes 1 and 2); 2 that the information contained in Annex 1 and its Appendices should be used as guidance for the use of this Recom
15、mendation. NOTE 1 These I/N levels are referenced to the total noise at the receiver input including system noise level (kTBF) and intra-service interference (see 5 in Annex 1). NOTE 2 The 15 or 5 azimuth range specified in recommends 1.1 and 1.2, respectively, are based on the application of a temp
16、oral approach methodology and elements of a specific rain cell model. Further refinement of this rain cell model or a new model may have some impact on these azimuth ranges and may lead to further development of this Recommendation. Rec. ITU-R F.1669-1 3 Annex 1 Derivation of FS protection criteria
17、in the 38 GHz and 40 GHz bands to be applied in the GSO sharing scenarios 1 Introduction The methodology presented in this Annex is based on the assumptions that the bit error performance in the 38 GHz and 40 GHz bands is dominated by rain fading. Therefore, in the situations where the interference
18、from GSO satellites arrives at azimuths close to the azimuth of the main-beam axis of the FS receiving antenna, both the desired and the interfering signal will be subjected to fading. As a consequence, the unfaded interference power may be higher than that which would be permissible if the interfer
19、ence power was constant. This unfaded interference power is determined by requiring that the controlling bit error performance criterion be met for the same percentage of time regardless of whether any correlation exists between the fading of the desired and interfering power. 2 FS fade margins In t
20、he 38 GHz and 40 GHz bands, and since link lengths are likely to be shorter than 2 km, an FS fade margin of 14 dB was considered representative of conventional links since it was assumed that a majority of such links have a fade margin (or net fade margin1) higher than this value. It has to be noted
21、 that this 14 dB fade margin, when considering systems using ATPC, corresponds to a link with a higher margin (e.g. = 14 dB net fade margin +10 dB ATPC range). On the other hand, it was also noted that in certain BWA applications, a fade margin of 10 dB is used for some short links and that these li
22、nks would consequently require a lower I/N value. In support of the consideration of these margins, Table 2 which is based on Recommendation ITU-R P.530, gives the required rain margin for link lengths up to 1.6 km at five different rain rates for both vertical and horizontal polarization. However,
23、it has to be noted that the 14 dB or the 10 dB rain fade margin in these 38 and 40 GHz bands are justified on calculations using Recommendation ITU-R P.530 which does not provide values of fade margin referenced to an error performance measure but gives absolute attenuation values (rain fading) for
24、a given percentage of time. In addition, according to Recommendation ITU-R F.1498, for a link designed for a 99.999% availability and in particular BWA systems which are assumed to compete with fibre, the fade margin may refer to the BER 1 106or severely errored seconds (SESs) level. It was also agr
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