三维散射和辐射问题的高阶体积和表面积分方程建模

E. Chobanyan, M. Ilić, B. Notaroš
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引用次数: 0

摘要

矩量法(MoM)是基于电磁学离散积分方程进行电磁场计算的最强大、最通用的通用数值工具之一,已被特别有效地用于频域开区(如散射和辐射)问题的全波三维(3-D)解。在与体积积分方程(VIE)方法相结合的MoM分析中,通过在自由空间中辐射的体积电(极化和传导)电流(实际电流)的分布,调用体积等效原理来表示包含任意非均匀性和复杂性的线性介电材料的散射或辐射结构,以及由此产生的具有总体积电流密度矢量或与之成比例的其他矢量的VIE。作为未知量,被MoM离散化。结合介质部件的VIE和基于金属部件电场强度矢量边界条件的表面积分方程(SIE),将表面电流(也就是实际电流)作为未知量处理,可以对复合介质和金属辐射/散射结构进行分析。这就产生了一种混合的VIE-SIE或VSIE公式,它同时解决了整个介电域的体积电流和金属表面上的表面电流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Higher order volume and surface integral equation modeling of 3-D scattering and radiation problems
The method of moments (MoM), as one of the most powerful and versatile general numerical tools for electromagnetic-field computations based on discretizing integral equations in electromagnetics, has been especially effectively used for full-wave three-dimensional (3-D) solutions to open-region (e.g., scattering and radiation) problems in the frequency domain. In the MoM analysis in conjunction with the volume integral equation (VIE) approach, the volume equivalence principle is invoked to represent a scattering or radiation structure containing linear dielectric materials of arbitrary inhomogeneity and complexity by a distribution of volume electric (polarization and conduction) currents (the real currents) radiating in free space, and the resulting VIE, with the total volume current density vector, or another vector proportional to it, as unknown quantity, is discretized by the MoM. The analysis of composite dielectric and metallic radiation/scattering structures can be performed combining the VIE for dielectric parts and the surface integral equation (SIE) based on the boundary condition for the electric field intensity vector for metallic parts, with surface electric currents (again, the actual currents) treated as an unknown quantity. This gives rise to a hybrid VIE-SIE or VSIE formulation, which solves simultaneously for the volume currents throughout the dielectric domains and the surface currents over the metallic surfaces.
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