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Theory and Simulation of Random Rough Surface Bistatic Scattering

机译:随机粗糙表面双基地散射的理论与模拟

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The radar cross section of sea clutter at (or near) the horizon is a critical parameter in evaluation of naval radar system performance. At low grazing angles and ranges involved, the existing data base is quite limited. At near-grazing illumination, the radar receives an echo from the sea surface which is characterized by short bursts of power. These are significantly stronger than the random average scattering. The problem of developing a model for rough surfaces is a very difficult one, since, at best, the scattering coefficientσ~0 is dependent upon (at least) radar frequency, geometrical and physical parameters, incident and observation angles, as well as polarization. In this paper, the development of a theoretical two-scale model describing bistatic reflectivity is presented. We give also the numerical results computed for the bistatic radar cross-section from random rough surfaces, especially from the sea surface. The numerical results for the bistatic scattering coefficient are used to show the brewster angle effect on near-grazing angles.
机译:地平线(或接近)海洋杂波的雷达横截面是评估海军雷达系统性能的关键参数。在涉及的低放牧角度和范围内,现有数据库非常有限。在近乎放牧照明时,雷达从海面接收回波,其特征在于短的电力爆发。这些明显强于随机平均散射。开发粗糙表面模型的问题是非常困难的问题,因为最多,散射系数σ〜0取决于(至少)雷达频率,几何和物理参数,入射和观察角度以及偏振。在本文中,提出了描述了描述双晶反射率的理论二维模型的发展。我们还给出了从随机粗糙表面的双面雷达横截面计算的数值结果,尤其是来自海面。双面散射系数的数值结果用于显示对近放牧角度的布鲁斯特角效应。

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