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Analysis of High-Frequency EM Scattering Properties on Time-Varying Sea Surface

机译:时变海面的高频电磁散射特性分析

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This paper proposes to solve the extra-large scale Electromagnetic (EM) scattering problem on a wind-driven sea surface at Low-grazing-angle (LGA) directed against a shore-based radar with an Iterative physical optics (IPO) model. Using Monte Carlo simulations, it compares the average Doppler spectra of backscattered signals at different angles and sea states. The methods are: the forward-backward methodology and its modification with under-relaxation iteration which improves convergence and stability of the IPO; the local iteration methodology and the Fast far-field approximation (FaFFA) in the matrix-vector product which reduce the computational complexity based on the scattering characteristics of sea surface. The simulations show a broadening effect of the Doppler spectra in a more complicated sea state at LGA.
机译:本文提出使用迭代物理光学(IPO)模型解决针对低掠角(LGA)的风驱动海面超大型电磁(EM)散射问题,该问题针对的是岸基雷达。使用蒙特卡洛模拟,它比较了在不同角度和海况下反向散射信号的平均多普勒频谱。这些方法是:前向后方法及其通过松弛松弛迭代进行的改进,从而提高了IPO的收敛性和稳定性。矩阵向量积中的局部迭代方法和快速远场逼近(FaFFA)可以降低基于海面散射特性的计算复杂性。模拟显示了LGA在更复杂的海况下多普勒光谱的加宽效应。

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