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Fast and Accurate Algorithm for Electromagnetic Scattering From 1-D Dielectric Ocean Surfaces

机译:一维介电海洋表面电磁散射的快速准确算法

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A fast and accurate multigrid (MG) algorithm is presented for the direct method-of-moments (MoM) numerical simulation of radar scattering from large-scale one-dimensional (1-D) dielectric randomly rough surfaces. The proposed MG algorithm combines the desirable features of the generalized conjugate residual preconditioned iterative procedure and a parallel implementation of the spectral acceleration scheme proposed by Chou and Johnson. In addition, the paper proposes effective preconditioning schemes designed to further enhance the numerical efficiency of the proposed algorithm. The accelerated MG algorithm was benchmarked against the exact MG solution for both transverse electric and transverse magnetic polarizations. The efficiency of the proposed algorithm facilitates scattering calculations from electrically large surfaces. Hence, the algorithm was used to assess the performance of an approximate physical-optics scattering model used for ocean forward scattering simulations at the Johns Hopkins University Applied Physics Laboratory (JHU/APL). The validations are performed at X-band and W-band frequencies.
机译:提出了一种快速准确的多网格(MG)算法,用于从大规模一维(1-D)电介质随机粗糙表面进行雷达散射的直接矩量(MoM)数值模拟。所提出的MG算法结合了广义共轭残差预处理迭代过程的理想特征以及Chou和Johnson提出的频谱加速方案的并行实现。此外,本文提出了有效的预处理方案,旨在进一步提高所提出算法的数值效率。针对横向电极化和横向磁极化,针对精确的MG解决方案对加速MG算法进行了基准测试。所提出算法的效率促进了从电大表面的散射计算。因此,该算法用于评估约翰霍普金斯大学应用物理实验室(JHU / APL)用于海洋前向散射模拟的近似物理光学散射模型的性能。验证是在X频段和W频段上执行的。

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