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Modeling of Doppler frequency shift in multipath radio channels

机译:多径无线电信道中的多普勒频移建模

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We discuss the modeling of propagation of a quasi-monochromatic radio signal, represented by a coherent pulse sequence, in a non-stationary multipath radio channel. In such a channel, signal propagation results in the observed frequency shift for each ray (Doppler effect). The modeling is based on the assumption that during propagation of a single pulse a channel can be considered stationary. A phase variation in the channel transfer function is shown to cause the observed frequency shift in the received signal. Thus, instead of measuring the Doppler frequency shift, we can measure the rate of variation in the mean phase of one pulse relative to another. The modeling is carried out within the framework of the method of normal waves. The method enables us to model the dynamics of the electromagnetic field at a given point with the required accuracy. The modeling reveals that a local change in ionospheric conditions more severely affects the rays whose reflection region is in the area where the changes occur.
机译:我们讨论了在非平稳多径无线电信道中以相干脉冲序列表示的准单色无线电信号的传播建模。在这样的通道中,信号传播会导致观察到的每条射线的频移(多普勒效应)。该建模基于以下假设:在单个脉冲传播期间,可以将某个通道视为固定通道。示出了信道传递函数中的相位变化,导致接收信号中观察到的频移。因此,代替测量多普勒频移,我们可以测量一个脉冲相对于另一个脉冲的平均相位的变化率。建模是在法线法的框架内进行的。该方法使我们能够以所需的精度对给定点的电磁场动力学进行建模。该模型表明,电离层条件的局部变化会更严重地影响其反射区域位于变化区域的射线。

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