ITU-R SA 1811-2007 Reference antenna patterns of large-aperture space research service earth stations to be used for compatibility analyses involving a large number of distributed Hz a.pdf
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1、 Rec. ITU-R SA.1811 1 RECOMMENDATION ITU-R SA.1811 Reference antenna patterns of large-aperture space research service earth stations to be used for compatibility analyses involving a large number of distributed interference entries in the bands 31.8-32.3 GHz and 37.0-38.0 GHz (2007) Scope This Reco
2、mmendation provides two reference antenna patterns, Ja and Jp, for large-aperture earth stations of the space research service (SRS) in the bands 31.8-32.3 GHz and 37.0-38.0 GHz. Ja is to be used for compatibility analyses involving a large number of distributed interference sources. Jp is to be use
3、d for compatibility analysis involving a few discrete interference sources. The ITU Radiocommunication Assembly, considering a) that in the analysis of compatibility or sharing between high density fixed service (HDFS) and the space research service (SRS), deep space, it is necessary to determine th
4、e levels of interference which may occur at SRS earth stations due to a large number of interference sources distributed in various azimuth directions; b) that, to determine these levels of interference, a reference antenna pattern needs to be defined; c) that side-lobe radiation patterns of large a
5、perture SRS earth station antennas, although believed to have similar general shapes, differ in specific gain values, their angular distribution and the locations of the peaks and troughs from antenna to antenna; d) that if it is desired to represent the radiation patterns of a class of antennas by
6、a single model, the mean and tolerance values are needed for every angle to describe the performance with accuracy and confidence; e) that an envelope model, such as the model given in Recommendation ITU-R SA.509, provides an upper bound to the side-lobe gain levels at most off-axis angles for the m
7、ajority of large-aperture antennas (D 100) used in the service; f) that such an envelope model is especially required where multiple SRS earth station antennas are collocated and every antenna needs to be protected against harmful interference; g) that, on the other hand, if the peak envelope gain p
8、attern is used in the assessment of the aggregate interference consisting of many interference sources, the predicted interference will result in values that are greater than values that would be experienced in practice; h) that statistical simulation (also known as Monte Carlo simulation) is often
9、used in compatibility or sharing studies involving many distributed interfering sources; j) that, given the uncertainty and variation of radiation patterns, an estimate of both mean and tolerance values are desired to obtain accurate and unbiased results in a statistical analysis; 2 Rec. ITU-R SA.18
10、11 k) that mathematical models of antenna gain patterns of the large-aperture SRS earth stations should closely approximate the physical performance of this class of antennas and be as consistent with the physical principles as possible; l) that, incorporating physical factors affecting the antenna
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