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A Hybrid FEM/MoM Technique for 3-D Electromagnetic Scattering From a Dielectric Object Above a Conductive Rough Surface

机译:混合FEM / MoM技术用于从导电粗糙表面上方的电介质物体进行3-D电磁散射

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摘要

A hybrid approach combining the edge-based vector finite-element method (FEM) and the method of moments (MoM) is first extended to study 3-D scattering from a dielectric object above a conductive rough surface. The hybrid FEM/MoM technique is based on the electric field vector Helmholtz's equation. To reduce the calculational domain, the solution region is divided into the FEM region containing the object and the MoM region containing the rough surface. In our hybrid method, tetrahedral elements are applied to handle the object region based on vector basis functions, whereas triangular elements are used to deal with the rough surface based on Rao–Wilton–Glisson basis functions. The electromagnetic coupling between the object and the rough surface is considered by the surface integral equation with the Green's function. The hybrid technique presented here combines advantages between FEM and MoM, which is highly efficient in terms of computing memory, time consumed, and versatility.
机译:结合了基于边缘的矢量有限元方法(FEM)和矩量方法(MoM)的混合方法,首先被扩展为研究导电粗糙表面上方的电介质物体的3-D散射。 FEM / MoM混合技术基于电场矢量Helmholtz方程。为了减少计算域,将求解区域分为包含对象的FEM区域和包含粗糙表面的MoM区域。在我们的混合方法中,基于矢量基函数,四面体元素被用于处理对象区域,而基于Rao–Wilton–Glisson基函数,三角形元素被用于处理粗糙表面。物体与粗糙表面之间的电磁耦合由具有格林函数的表面积分方程来考虑。此处介绍的混合技术结合了FEM和MoM之间的优势,在计算内存,耗时和多功能性方面非常高效。

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