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Properties of attenuating and depolarizing atmospheric hydrometeors measured on a 19-GHz earth-space radio path

机译:在19 GHz地球-太空无线电路径上测量的大气水汽计的衰减和去极化特性

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摘要

One year of propagation data were obtained for a 19-GHz earth-satellite path terminating at Crawford Hill, New Jersey. These data were analyzed to determine the depolarizing and attenuating properties of liquid (rain) and solid (ice) hydrometeors along the path. The observed projections of the symmetry axes of ice and rain hydrometeors were found, generally, to lie near the horizontal and vertical planes. Ice deviates from this orientation more than rain; ice occasionally is found at any possible orientation. The observed differential attenuation and differential phase for a given copolarized signal attenuation were lower than those seen on terrestrial paths. Present terrestrial rain models do not adequately describe these results. Maximum depolarization was observed to occur for linear incident polarizations near 45°. This maximum depolarization is sufficient to significantly affect the performance of dual-polarization satellite communications systems. Depolarization close to the minimum attainable for instantaneously optimized linear incident polarizations was observed most of the time for fixed vertical and horizontal polarizations. These minimum depolarization levels were low enough to have little effect on most dual-polarization systems.
机译:获得了一条终止于新泽西州克劳福德山的19 GHz卫星地球路径的一年传播数据。分析这些数据以确定沿路径的液体(雨水)和固体(冰)水凝液的去极化和衰减特性。发现冰和雨水流星对称轴的观测投影通常位于水平面和垂直平面附近。冰偏离这个方向的方向比雨更偏离方向。偶尔会在任何可能的方向找到冰。对于给定的共极化信号衰减,观察到的差分衰减和差分相位低于在地面路径上看到的差分衰减和差分相位。当前的地面降雨模型不能充分描述这些结果。对于接近45°的线性入射偏振,观察到最大消偏振。这种最大的去极化足以严重影响双极化卫星通信系统的性能。对于固定的垂直和水平极化,大多数时候观察到的去极化接近瞬时优化的线性入射极化所能达到的最小值。这些最小的去极化水平足够低,以至于对大多数双极化系统几乎没有影响。

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