Deep Space Communication Channel Characteristics under Solar Scintillation

Tong Wu, Yi Yan, Yongcheng Li, Chunmei Wang, Xiujuan Yao, Xue Li
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引用次数: 1

Abstract

Electromagnetic waves used for deep space communications are mainly affected by the charged particles ejected by the sun. These effects may result in degradation of communication quality or communication interruption. This paper discusses the effects of solar scintillation on electro-magnetic waves, including the scintillation index which is a measure of the intensity scintillation, the coherence bandwidth and the coherence time of deep space communication channel. The deep space communication channel under solar scintillation is modeled by using Rician fading channel according to the scintillation index. The coherence bandwidth will determine whether the channel is flat fading or frequency selective fading and the coherence time will determine whether the channel is slow fading or fast fading. The approach of choosing signal band width is determined by the coherence bandwidth and the coherence time with the change of the solar elongation angle. The simulation results show the bit error rate of the signal bandwidth chosen by the proposed approach is lower than a random choice.
太阳闪烁下深空通信信道特性研究
用于深空通信的电磁波主要受到太阳喷射出的带电粒子的影响。这些影响可能导致通信质量下降或通信中断。本文讨论了太阳闪烁对电磁波的影响,包括测量太阳闪烁强度的闪烁指数、深空通信信道的相干带宽和相干时间。在太阳闪烁条件下,根据闪烁指数,采用雷达衰落信道对深空通信信道进行建模。相干带宽将决定信道是平坦衰落还是频率选择性衰落,相干时间将决定信道是慢衰落还是快衰落。选择信号带宽的方法由相干带宽和相干时间随太阳延伸角的变化决定。仿真结果表明,该方法所选择的信号带宽误码率低于随机选择的误码率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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