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On the Amplitude Distributions of Bistatic Scattered Fields From Rough Surfaces

机译:粗糙表面双站散射场的振幅分布

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Non-Rayleigh distributed radar clutter is widely reported in studies of radar scattering from sea and land surfaces. Existing models of scattered field amplitude distributions have been developed primarily through empirical fits to the statistics of radar backscatter measurements. In contrast, this paper investigates a physics-based approach to determine the amplitude distributions of fields scattered from rough surfaces using Monte Carlo simulations and analytical methods, for both backscattering and bistatic configurations. The rough surface is represented using a “two-scale” model. An individual surface facet contains “small-scale” roughness, for which scattered fields are evaluated using the second-order small slope approximation. Individual surface facets are tilted by the slopes of the “large-scale” roughness in a given observation. The results show that non-Rayleigh amplitude distributions are obtained when tilting is performed, and that the departure from the Rayleigh distribution becomes more significant as the variance of the tilting slope increases. Further analysis shows that this departure results from variations in the mean scattering amplitude from a facet (the texture) as tilting occurs. The distribution of the texture is studied and compared with existing models. Finally, the distribution of the scattered field amplitude is modeled through the compound Gaussian model, first using the distribution of the texture, and then in terms of the probability density function of tilting slopes (which avoids the requirement of the knowledge of the texture distribution). The results from the above two methods are in good agreement and both agree well with the Monte Carlo simulation.
机译:在从海面和陆面的雷达散射研究中,非瑞利分布式雷达杂波得到了广泛报道。现有的散射场振幅分布模型主要是通过经验拟合得出雷达反向散射测量的统计数据。相比之下,本文研究了一种基于物理的方法,用于确定反向散射和双基地配置下使用蒙特卡洛模拟和分析方法从粗糙表面散射的场的振幅分布。粗糙表面使用“两尺度”模型表示。单个表面包含“小规模”粗糙度,其粗糙度使用二阶小斜率近似值进行评估。在给定的观察结果中,各个表面刻面都被“大规模”粗糙度的斜率倾斜。结果表明,进行倾斜时可以获得非瑞利振幅分布,并且随着倾斜斜率方差的增加,与瑞利分布的偏离变得更加明显。进一步的分析表明,这种偏离是由于倾斜发生时,小平面(纹理)的平均散射幅度发生变化而引起的。研究了纹理的分布并将其与现有模型进行比较。最后,首先通过复合高斯模型对散射场振幅的分布进行建模,首先使用纹理的分布,然后再根据倾斜斜率的概率密度函数(这避免了需要了解纹理分布的要求) 。上述两种方法的结果吻合良好,并且都与蒙特卡洛模拟非常吻合。

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