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Average Bit Error Rate for Satellite Downlink Communications in Ka-band under Atmospheric Turbulence Given by Gaussian Model

机译:高斯模型下的大气湍流下KA波段中卫星下行通信的平均误码率

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We study the influence of atmospheric turbulence on satellite communications by the theoretical analysis of propagation characteristics of electromagnetic waves through inhomogeneous random media. We analyze the average bit error rate (BER) for the Geostationary Earth Orbit satellite downlink communications in Ka-band under atmospheric turbulence whose statistical characteristics are given by the Gaussian model. The average BER is deduced by the probability density function of the received intensity, which function is obtained by the moments of the received intensity. From the analysis, we find that the variance of received intensity caused by wave form distortion results in the degradation in BER performance at low elevation angles.
机译:我们通过非均匀随机介质研究电磁波的传播特性的理论分析研究大气湍流对卫星通信的影响。我们分析了在大气湍流下KA波段中的地静止地球轨道卫星下行链路通信的平均误码率(BER),其统计特征由高斯模型给出。通过接收强度的概率密度函数推导出平均BER,该函数通过接收强度的时刻获得。从分析中,我们发现波形失真引起的接收强度的方差导致在低仰角处的BER性能下降。

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