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首页> 外文期刊>Radio Science >Full wave solutions for rough-surface bistatic radar cross sections: Comparison with small perturbation, physical optics, numerical, and experimental results
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Full wave solutions for rough-surface bistatic radar cross sections: Comparison with small perturbation, physical optics, numerical, and experimental results

机译:粗糙表面双基地雷达横截面的全波解决方案:与小扰动,物理光学,数值和实验结果的比较

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摘要

In this paper, full wave solutions are derived for the like- and cross-polarized electromagnetic fields diffusely scattered by two-dimensional rough surfaces. These expressions for the diffuse scattered fields are used to obtain the random rough-surface cross sections. The rough surface is characterized by a Gaussian joint probability density function for the surface heights and slopes at two points. These full wave results are compared with the associated small-perturbation results and physical optics results. They are also compared with experimental and numerical results (based on Monte Carlo simulations). The earlier assumption that the surface height and slopes can be considered to be uncorrelated is examined. The impact of using the large-radii curvature assumption and including self-shadow is also considered.
机译:在本文中,针对由二维粗糙表面散射的相似和交叉极化的电磁场,得出了全波解。这些用于弥散散射场的表达式用于获得随机的粗糙表面横截面。粗糙表面的特征是针对两点表面高度和坡度的高斯联合概率密度函数。将这些全波结果与相关的小扰动结果和物理光学结果进行比较。还将它们与实验和数值结果(基于蒙特卡洛模拟)进行比较。检验了先前认为表面高度和坡度不相关的假设。还考虑了使用大半径曲率假设并包括自阴影的影响。

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