首页> 外文会议>Asia-Pacific Microwave Conference vol.4; 20051204-07; Suzhou(CN) >Electromagnetic Scattering of a Target with Strong or Weak Coupled Underlying Oceanic Surface: A FEM Approach with FFT Accelerated Iterative Robin Boundary Condition
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Electromagnetic Scattering of a Target with Strong or Weak Coupled Underlying Oceanic Surface: A FEM Approach with FFT Accelerated Iterative Robin Boundary Condition

机译:具有强耦合或弱耦合底层海面的目标的电磁散射:具有FFT加速迭代Robin边界条件的FEM方法

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摘要

To study electromagnetic scattering of a target at high altitude above rough oceanic surface, the Iterative Robin Boundary Condition (IRBC) is employed to separate and enclose two isolate regions of the target and underlying surface. The fields in these two enclosed regions are strongly or weakly coupled by iteratively solving the scattering field integral equation in the finite element method (FEM) with updating the right-hand side residual of the Robin BC. Most time consuming of the algorithm is spent on evaluating the Robin BC on the fictitious planar boundary over the large-scale rough surface. The scattering field integral equation is written as the 1D (one-dimensional) convolution form and is solved efficiently by using the fast Fourier transform (FFT). This study presents a numerical description for the scattering mechanism associated with strong or weak coupled interactions of a volumetric target at various altitudes above randomly rough surface.
机译:为了研究粗糙海洋表面上方高空目标的电磁散射,采用迭代罗宾边界条件(IRBC)分离并围住目标和下面表面的两个隔离区域。通过在有限元法(FEM)中迭代求解散射场积分方程并更新Robin BC的右侧残差,可以强而弱地耦合这两个封闭区域中的场。该算法最耗时的时间是在大规模粗糙表面上的虚拟平面边界上评估Robin BC。散射场积分方程写为一维(一维)卷积形式,并通过使用快速傅立叶变换(FFT)有效地求解。这项研究提出了与随机粗糙表面上方不同高度的体积目标的强弱耦合相互作用相关的散射机制的数值描述。

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