HO-SIE Based Domain Decomposition Method for Solving Multiscale EM Scattering Problems

Qiangming Cai, Yanwen Zhao, Yuying Zhu, Xianjin Li, Xin Cao, Mao-Song Lin, J. Fan
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Abstract

In this paper, a novel non-overlapping and noncon-formal domain decomposition method (DDM) based on surface integral equation (SIE) is developed for the electromagnetic (EM) scattering analysis of multiscale PEC objects. In this work, by adopting an interior penalty term, a discontinuous Galerkin approach can be utilized to avoid the introduction of artificial touching faces between adjacent subdomains and avoid the introduction of stabilization term depending on the line integral over interactions of nonconformal meshes. To enhance the efficiency of modeling subdomains, higher order hierarchical vector (HOHV) basis functions defined on curved triangular patches are used in this SIE to reduce computational cost. Moreover, an additive non-overlapping DD preconditioner is also constructed for the fast iterative solution. Two numerical results are given to demonstrate the validity of this HO-SIE-DDM.
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基于HO-SIE的区域分解方法求解多尺度电磁散射问题
本文提出了一种基于表面积分方程(SIE)的非重叠非形式化区域分解方法(DDM),用于多尺度PEC物体的电磁散射分析。本文采用内部惩罚项,利用不连续伽辽金方法避免相邻子域之间引入人工接触面,避免引入依赖于非共形网格相互作用的线积分的稳定项。为了提高子域的建模效率,在该模型中使用了定义在弯曲三角形块上的高阶层次向量基函数来降低计算成本。此外,为了快速迭代解,构造了一个可加性无重叠DD预条件。给出了两个数值结果,验证了该模型的有效性。
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