DocumentCode
1081146
Title
Results of 20/12.5 and 30/20-GHz XPD-frequency scaling measurements with the Olympus satellite
Author
Jakoby, Rolf
Author_Institution
Forschungs und Technologiezentrum FTZ, Deutsche Telekom AG, Darmstadt, Germany
Volume
43
Issue
12
fYear
1995
fDate
12/1/1995 12:00:00 AM
Firstpage
1503
Lastpage
1508
Abstract
Reports on three years of crosspolar discrimination (XPD) frequency-scaling measurements in Germany performed by the Research Center of Deutsche Telekom. Concurrent measurements were carried out at 12.5, 20 and 30 GHz using the OLYMPUS satellite. Two different types of 20/12.5 and 30/20 GHz statistics were analyzed: (1) equiprobability and (2) instantaneous XPD-frequency scaling statistics. The results of equiprobability crosspolar scaling studies for total and ice depolarization are in reasonable agreement with the scaling laws proposed by ITU-R with some deviations, however, depending on the depolarization mechanism. In addition, a variability analysis of instantaneous XPD scaling factors was carried out from their joint conditional distributions, showing the spread which can be expected in long-term scaled SPD statistics. Although total depolarization is strongly affected by ice, the variation of the scaled data is relatively small since the scaling behavior of rain and ice depolarization is very similar in the considered frequency range
Keywords
electromagnetic wave polarisation; ice; microwave propagation; rain; satellite communication; satellite links; tropospheric electromagnetic wave propagation; 12.5 GHz; 20 GHz; 30 GHz; Olympus satellite; SHF; XPD-frequency scaling measurements; crosspolar discrimination; equiprobability; ice depolarization; rain; variability analysis; Attenuation; Frequency dependence; Frequency measurement; Ice; Interchannel interference; Polarization; Rain; Satellite ground stations; Statistical analysis; Statistical distributions;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/8.475947
Filename
475947
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