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Tropospheric scintillation in the 14/11-GHz bands on Earth-space paths with low elevation angles

机译:低仰角地球空间路径上14/11 GHz波段的对流层闪烁

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摘要

Radio waves with frequencies above 10 GHz at low-elevation-angle paths are significantly affected not only by rain but also by atmospheric irregularities in the troposphere. The tropospheric scintillation due to irregularities of the refractive index in the troposphere is investigated using 14/11-GHz low-elevation measurements made during 1983 at Yamaguchi, Japan. The diurnal and seasonal variations, frequency dependence derived from a comparison of the 11- and 14-GHz signals, and elevation-angle dependence of the scintillation data are presented. A comparison between the propagation data and ground-level meteorological measurements indicated a high correlation between the scintillation characteristics and the water vapor contribution to the radio refractive index inferred from local humidity and temperature data. This suggests a method for predicting the severity of scintillation fading using local measurements of meteorological parameters.
机译:低仰角路径上频率高于10 GHz的无线电波不仅会受到降雨的影响,而且还会受到对流层大气不规则性的影响。 1983年在日本山口市进行的14 / 11-GHz低高度测量研究了对流层中由于折射率不规则引起的对流层闪烁。给出了昼夜变化和季节变化,从11 GHz和14 GHz信号的比较得出的频率依赖性以及闪烁数据的仰角依赖性。传播数据与地面气象测量值之间的比较表明,闪烁特性与水蒸气对从局部湿度和温度数据推断出的无线电折射率的贡献之间存在高度相关性。这表明使用局部气象参数测量来预测闪烁衰落严重程度的方法。

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