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Simulation of Microwave Scattering from Wind-Driven Ocean Surfaces

机译:风力驱动海面微波散射的仿真

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An efficient approach for fast analysis of vector wave scattering from random rough surfaces is described in this paper. Numerical examples are provided to demonstrate the merits of the scheme. The underlying methodology lies on using a single integral equation formulation combined with a multilevel sparse-matrix canonical-grid method. Triangular patches are employed to tightly model the surfaces. A localized approximation method is employed for the highly conductive seawater medium. A beam decomposition technique is incorporated to cope with an extremely large surface. Monte-Carlo simulation results are presented as bistatic scattering coefficients for wind-driven ocean surfaces illuminated by microwave beams at L-band. A special attention is paid to low grazing incidences due to its practical importance.
机译:本文描述了一种高效地分析了从随机粗糙表面的矢量波散射的高效方法。提供了数值示例以证明该方案的优点。底层方法介于使用单一积分方程式配方,结合多级稀疏矩阵规范栅格方法。使用三角形贴片来紧密地模拟表面。用于高导电海水介质的局部近似方法。束分解技术被掺入应对极大的表面。 Monte-Carlo仿真结果作为通过L波段在L波段照射的风力驱动海面的双浪潮散射系数。由于其实际重要性,特别关注低放牧群。

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