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首页> 外文期刊>Ocean Engineering >Radar cross section analysis of marine targets using a combining method of physical optics/geometric optics and a Monte-Carlo simulation
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Radar cross section analysis of marine targets using a combining method of physical optics/geometric optics and a Monte-Carlo simulation

机译:物理光学/几何光学与蒙特卡洛模拟相结合的海洋目标雷达截面分析

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摘要

In this paper, the radar cross section of flat plates on ocean surfaces is statistically investigated. A combining method of physical optics and geometric optics is applied to establish an effective backscattering analysis procedure. This method is a high-frequency analysis method originally derived from a simplified Stratton-Chu integral equation, assuming that the radar is far away from the target so that Kirchhoff approximation is valid. A Monte-Carlo simulation method is adopted to statistically analyze the effects of undulated ocean surfaces. The ocean surfaces are randomly generated by Pierson-Moskowitz ocean wave spectrum and a directional distribution function. Numerical investigations are carried out for flat plates, with the same height and width but with different inclined angles, on ocean surfaces of various significant wave heights.
机译:本文对海洋表面平板的雷达截面进行了统计研究。应用物理光学和几何光学的组合方法建立有效的反向散射分析程序。该方法是一种高频分析方法,最初是从简化的Stratton-Chu积分方程得出的,假设雷达距离目标较远,因此Kirchhoff近似有效。采用蒙特卡罗模拟方法对海面起伏的影响进行统计分析。海洋表面是由Pierson-Moskowitz海洋波谱和方向分布函数随机生成的。对具有不同高度波高的海面上具有相同高度和宽度但具有不同倾斜角的平板进行了数值研究。

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