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Atmospheric turbulence effects on radar systems

机译:大气湍流对雷达系统的影响

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Atmospheric turbulence has been shown to have measurable effects on several aspects of radar performance. In this paper we discuss the perturbation of the angle-of-arrival (AOA) of radar beams caused by the atmosphere, the effects of lognormal- and Weibull-distributed clutter on detection performance, and the detection probability of ultrawideband pulses propagated through the atmosphere in the presence of turbulence and Gaussian noise. We find that AOA effects are on the order of a few microradians, which is a negligible level for most applications, but that clutter and noise, when combined with turbulent fluctuations, give some surprising results when the ratio of signal to clutter and noise is calculated. The detection of ultrawideband pulses is analogous to the “needle in a haystack” problem. In this paper, we present theories describing each of these phenomena, together with calculated results. For AOA, we have made measurements for one-way propagation that agree well with this theory, but the other phenomena have yet to be measured.
机译:大气湍流已显示对雷达性能的多个方面具有可测量的影响。本文讨论了大气引起的雷达波束到达角(AOA)的扰动,对数正态分布和威布尔分布杂波对检测性能的影响以及通过大气传播的超宽带脉冲的检测概率在湍流和高斯噪声的情况下。我们发现,AOA效应约为几个微弧度,在大多数应用中可以忽略不计,但杂波和噪声,加上湍流波动,在计算信号与杂波和噪声之比时会产生一些令人惊讶的结果。超宽带脉冲的检测类似于“大海捞针”问题。在本文中,我们介绍了描述每种现象的理论以及计算结果。对于AOA,我们已经对单向传播进行了测量,该测量与该理论非常吻合,但其他现象尚待测量。

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