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Correlation between attenuation of 20 GHz satellite communication link and Liquid Water Content in the atmosphere

机译:20 GHz卫星通信链路的衰减与大气中液态水含量之间的相关性

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The effect of Liquid Water Content, i.e. the mass of the water per volume unit of the atmosphere, on the attenuation of a 20 GHz communication link between a ground antenna and communication satellite is tackled in this paper. The wavelength of 20 GHz electromagnetic radiation is comparable to the droplet size, consequently the scattering plays an important role in the attenuation. To better understand this phenomenon a correlation between measured LWC and attenuation is analysed. The LWC is usually estimated from the pluviograph rain rate measurements that captures only spatially localized and ground level information about the LWC. In this paper the LWC is extracted also from the reflectivity measurements provided by a 5.6 GHz weather radar situated in Lisca, Slovenia. The radar measures reflectivity in 3D and therefore a precise spatial dependency of LWC along the communication link is considered. The attenuation is measured with an in-house receiver Ljubljana Station SatProSi 1 that communicates with a geostationary communication satellite ASTRA 3B on the 20 GHz band.
机译:本文解决了液态水含量(即大气中每体积单位的水质量)对地面天线和通信卫星之间20 GHz通信链路衰减的影响。 20 GHz电磁辐射的波长与液滴大小相当,因此,散射在衰减中起着重要作用。为了更好地理解该现象,分析了测得的LWC和衰减之间的相关性。 LWC通常是通过仅收集有关LWC的空间局部和地面信息的集雨仪降雨率测量值来估算的。本文还从位于斯洛文尼亚利斯卡的5.6 GHz天气雷达提供的反射率测量结果中提取了LWC。雷达以3D方式测量反射率,因此考虑了LWC沿通信链路的精确空间依赖性。使用内部接收机卢布尔雅那站SatProSi 1测量衰减,该接收机与20 GHz频带上的对地静止通信卫星ASTRA 3B通信。

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