A hybrid surface integral equation partial differential equation (SIE-PDE) formulation without the boundary condition requirement is proposed to solve the transverse magnetic (TM) electromagnetic problems. In the proposed formulation, the computational domain is decomposed into two overlapping domains: the SIE and PDE domains. In the SIE domain, complex structures with piecewise homogeneous media, e.g., highly conductive media, are included. An equivalent model for those structures is constructed by replacing them with the background medium and introducing a surface equivalent electric current density on an enclosed boundary to represent their electromagnetic effects. The remaining computational domain and homogeneous background medium replaced domain consist of the PDE domain, in which inhomogeneous or non-isotropic media are included. Through combining the surface equivalent electric current density and the inhomogeneous Helmholtz equation, a hybrid SIE-PDE formulation is derived. It requires no boundary conditions, and is mathematically equivalent to the original physical model. Through careful construction of basis functions to expand electric fields and the equivalent current density, the discretized formulation is made compatible with the SIE and PDE domain interface. The accuracy and efficiency are validated through two numerical examples. Results show that the proposed SIE-PDE formulation can obtain accurate results, and significant performance improvements in terms of CPU time and memory consumption compared with the FEM are achieved.
翻译:为了解决反向磁电磁(TM)电磁问题,建议了没有边界条件要求的混合表面整体方程式(SIE-PDE)部分差异方程式(SIE-PDE)配方。在拟议的配方中,计算域被分解成两个重叠领域:SIE和PDE域。在SIE域中,包含一个复杂结构,具有片状同质介质,例如高导导电介质等同介质;为这些结构构建了一个等同模型,用背景介质替换这些结构,并在封闭边界上引入一个表面等同的电流密度,以代表其电磁效应。其余的计算域和同质背景介质替代域由PDE域域组成,其中包含不相色或非异色介质的介质。通过将表面等同电流密度和不相色相均匀介质介质介质的面结构,SIE-DIS-PER混合配方能与SIE和PE-D-C-C-CFID-S-C-SID-Cal-Cal-ID-ID-ID-ILD-ID-ID-IL 和ID-ID-ID-ID-ILVLVD-ID-ID-ID-ID-ID-ID-ID-ID-ID-ID-SD-ID-ID-ID-ID-ID-ID-SD-ID-Ientalentaldaldaldex 的两种性能和制能和制能和制为两个重要和数字性能和制能和制算和制为两个重要的比较的精确和数和制能和制数和制数和制数和制能的比较。