On the Incompleteness of Integral Equation Formulations for Electro-Magnetic Field Computations

W. Schroeder, I. Wolff
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引用次数: 1

Abstract

It is shown that integral equation formulations for electromagnetic field problems which amount to compact operators (as found e.g. in boundary integral or spectral domain approaches) are incomplete problem specifications for purposes of numerical solution. They describe problems which are ill-posed in the sense of Hadamard. This difficulty becomes apparent after some implementation specific degree of problem complexity is reached. It is demonstrated that for electromagnetic field eigenvalue problems the consequence is a failure to detect any solution, except eventually spurious solutions if an inadequate discretization procedure is employed. It is concluded that integral equation formulations with compact operators must be accompanied by regularization conditions to yield a complete problem specification. Theoretical results are illustrated by numerical details from full-wave boundary integral equation analysis of a coplanar waveguide with conductors of finite thickness and finite conductivity.
电磁场计算中积分方程公式的不完备性
结果表明,电磁场问题的积分方程的形式相当于紧算符(如在边界积分或谱域方法中发现的),对于数值解的目的是不完整的问题规范。它们描述的问题在阿达玛尔的意义上是病态的。在实现特定程度的问题复杂性达到之后,这个困难就变得明显了。证明了对于电磁场特征值问题,如果采用不适当的离散化程序,结果是无法检测到任何解,除了最终的伪解。得到了具有紧算子的积分方程公式必须伴随正则化条件才能得到完整的问题规范。对具有有限厚度和有限导电性导体的共面波导的全波边界积分方程进行了数值分析,得到了理论结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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