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A Study of the Fourth-Order Small Perturbation Method for Scattering From Two-Layer Rough Surfaces

机译:两层粗糙表面散射的四阶小扰动方法研究

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Predictions of the fourth-order small perturbation method (SPM) are examined for scattering from two rough surfaces in a layered geometry. Cross-polarized backscatter, in particular, is emphasized because use of the fourth-order SPM is required to obtain this quantity. The formulation of the SPM fields and incoherent ensemble-averaged normalized radar cross sections (NRCSs) up to the third and the fourth order in surface rms heights, respectively, are reviewed. It is shown that the fourth-order NRCS includes distinct contributions from upper and lower interface roughnesses, as well as an “interaction” term that couples the upper and lower interface roughnesses. A comparison with NRCS values computed using the “numerically exact” method of moments in the full bistatic scattering pattern is shown for verification, and NRCS values at the second and the fourth order are compared in order to assess the convergence of the SPM series. Although the number of parameters inherent in the two-layer rough surface scattering problem makes an exhaustive study of scattering effects difficult, several illustrative examples are presented to capture a range of scattering behaviors. The results emphasize the importance of interactions between the rough surfaces in producing cross-polarized backscattering and also indicate an increased significance of fourth-order contributions in the two-layer geometry as compared to the single-layer case.
机译:检验了四阶小扰动方法(SPM)的预测是否存在分层几何结构中两个粗糙表面的散射。由于需要使用四阶SPM才能获得此数量,因此特别强调了交叉极化的反向散射。分别回顾了SPM场的公式和在表面均方根高度分别达到三阶和四阶的非相干集合平均归一化雷达横截面(NRCS)。结果表明,四阶NRCS包括上下界面粗糙度的明显贡献,以及耦合上下界面粗糙度的“相互作用”项。显示了与使用“双精确”散射模式中的“数值精确”矩法计算的NRCS值进行比较以进行验证,并比较了第二和第四阶的NRCS值,以评估SPM系列的收敛性。尽管两层粗糙表面散射问题中固有的参数数量使对散射效应的详尽研究变得困难,但仍提供了一些说明性示例来捕获一定范围的散射行为。结果强调了粗糙表面之间相互作用在产生交叉极化背向散射中的重要性,并且还表明与单层情况相比,在两层几何结构中四阶贡献的重要性增加。

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