首页> 外文期刊>Journal of Electromagnetic Waves and Applications >THEORETICAL ANALYSIS OF BIT ERROR RATE FOR SATELLITE COMMUNICATIONS IN KA-BAND UNDER ATMOSPHERIC TURBULENCE GIVEN BY KOLMOGOROV MODEL
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THEORETICAL ANALYSIS OF BIT ERROR RATE FOR SATELLITE COMMUNICATIONS IN KA-BAND UNDER ATMOSPHERIC TURBULENCE GIVEN BY KOLMOGOROV MODEL

机译:KOLMOGOROV模型给定大气湍流下Ka波段卫星通信误码率的理论分析

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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. The analysis is done by using the moment of wave fields given on the basis of a multiple scattering method. We analyze the bit error rate (BER) using the average received intensity or power for the Geostationary Earth Orbit (GEO) satellite communications in Ka-band at low elevation angles under atmospheric turbulence whose statistical characteristics are given by the Kolmogorov model. From the analysis, the degradation in BER for the uplink is found to be caused by the decrease in the average received intensity due to spot dancing and wave form distortion of wave beams; on the other hand, for the downlink, the degradation in BER is caused by the decrease in the spatial coherence of received waves.
机译:通过理论分析电磁波通过不均匀随机介质的传播特性,我们研究了大气湍流对卫星通信的影响。通过使用基于多重散射方法给出的波场矩来进行分析。我们使用在大气湍流下低仰角的Ka波段对地静止地球轨道(GEO)卫星通信的平均接收强度或功率来分析误码率(BER),其统计特征由Kolmogorov模型给出。通过分析,发现上行链路的BER降低是由于平均跳舞强度的降低和光束的点舞和波形畸变引起的。另一方面,对于下行链路,BER的下降是由于接收波的空间相干性降低而引起的。

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