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A computational method for modeling arbitrary junctions employing different surface integral equation formulations for three-dimensional scattering and radiation problems

机译:一种使用任意表面积分方程公式求解任意结的三维散射和辐射问题的计算方法

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This paper presents a new method, based on the well-known method of moments (MoM), for the numerical electromagnetic analysis of scattering and radiation from metallic or dielectric structures, or both structure types in the same simulation, that are in contact with other metallic or dielectric structures. The proposed method for solving the MoM junction problem consists of two separate algorithms, one of which comprises a generalization for bodies in contact of the surface integral equation (SIE) formulations. Unlike some other published SIE generalizations in the field of computational electromagnetics, this generalization does not require duplicating unknowns on the dielectric separation surfaces, except duplications for a very small fraction of unknowns corresponding to junction edges, which introduces a negligible computational cost. Additionally, this generalization is applicable to any ordinary single-scatterer SIE formulations employed as baseline. The other algorithm deals with enforcing boundary conditions and Kirchhoff's Law, relating the surface current flow across a junction edge. Two important features inherent to this latter algorithm consist of a mathematically compact description in matrix form, and importantly, from a software engineering point of view, an easy implementation in existing MoM codes which makes the debugging process more comprehensible. A practical example involving a real grounded monopole antenna for airplane-satellite communication is analyzed for validation purposes by comparing with precise measurements covering different electrical sizes.
机译:本文提出了一种基于众所周知的矩量法(MoM)的新方法,用于对电磁或金属结构或同一结构中两种结构类型(与其他结构接触)的散射和辐射进行数值电磁分析金属或介电结构。所提出的用于解决MoM结问题的方法由两个单独的算法组成,其中一个算法包括对与表面积分方程(SIE)公式接触的物体的一般化。与在计算电磁学领域中其他一些已发表的SIE概论不同,该概论不需要在介质分离表面上重复未知数,除了重复对应于结边的极小部分未知数外,这会带来可忽略的计算成本。另外,这种概括适用于任何用作基线的普通单散射SIE配方。另一种算法处理强制边界条件和基尔霍夫定律(Kirchhoff's Law),涉及跨结边缘的表面电流。后一种算法固有的两个重要特征包括矩阵形式的数学紧凑描述,并且重要的是,从软件工程的角度来看,在现有MoM代码中易于实现,这使得调试过程更加容易理解。通过与覆盖不同电气尺寸的精确测量值进行比较,分析了一个实际示例,该示例涉及用于飞机卫星通信的实际接地单极天线。

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