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Analysis and Simulation of Channel Nonreciprocity in Meteor-Burst Communications

机译:流星通信中信道不可逆性的分析与仿真

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摘要

This paper addresses the problem of nonreciprocity of propagation conditions in meteor-burst communication systems (MBCSs). In prior publications, this problem has not gained appropriate attention. The channel nonreciprocity may have a significant impact on such advanced communication systems as meteor synchronization systems with nanosecond precision and meteor key distribution systems intended to securely create two identical copies of a shared secret key at both channel sides. These systems are based on the processing of phase characteristics of meteor radio reflections that need to be accurately modeled. We propose a new MBCS simulation model that is based on a rigorous solution to the problem of oblique diffraction of radio waves on ionized meteor trails. Our diffraction approach allows more accurate simulation of the amplitude and phase characteristics of oppositely propagating signals that makes possible detailed investigation of the channel nonreciprocity effects. Using this approach, we present some preliminary simulation results on the channel nonreciprocity at meteor-burst propagation that prove satisfactory immunity of MBCS to ionospheric disturbances even while operating in severe conditions of polar regions.
机译:本文解决了流星爆发通信系统(MBCS)中传播条件的不可逆性问题。在以前的出版物中,此问题尚未得到适当的关注。通道不可逆性可能会对高级通信系统(如具有纳秒精度的流星同步系统和旨在在两个通道侧安全创建共享密钥的两个相同副本的流星密钥分发系统)产生重大影响。这些系统基于流星无线电反射的相位特性的处理,需要对其进行精确建模。我们提出了一个新的MBCS仿真模型,该模型基于严格解决电离流星轨迹上无线电波倾斜衍射的问题。我们的衍射方法可以更准确地模拟反向传播信号的幅度和相位特性,从而可以详细研究通道的非互易性效应。使用这种方法,我们对流星爆发传播中的通道不可逆性提供了一些初步的模拟结果,这些结果证明了MBCS即使在极地极端条件下也能很好地抵抗电离层干扰。

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