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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A symmetric FEM-IE formulation with a single-level IE-QR algorithm for solving electromagnetic radiation and scattering problems
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A symmetric FEM-IE formulation with a single-level IE-QR algorithm for solving electromagnetic radiation and scattering problems

机译:具有单级IE-QR算法的对称FEM-IE公式,用于解决电磁辐射和散射问题

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摘要

This paper presents, for the first time in the engineering community, a symmetric coupling between the finite element and integral equation methods (FEM-IE) for solving three-dimensional unbounded radiation and scattering problems. The proposed FEM-IE is based on the E-field vector Helmholtz equation. Curl-conforming vector finite elements are used to discretize the interior region, whereas the divergence-conforming surface elements are utilized in the IE truncation surface. The symmetry in the IE part is restored through the application of the Calderon-projector. Moreover, the IE computations are accelerated using a single level QR algorithm. This reduces both memory and computational time. Furthermore it allows the use of different Green's functions for the exterior problem, with only minor modifications on the algorithm. The resulted system of equations is solved with a very efficient preconditioned conjugate gradient (PCCG) with a p-Multiplicative Schwarz preconditioner.
机译:本文首次在工程界提出了用于解决三维无界辐射和散射问题的有限元和积分方程法(FEM-IE)之间的对称耦合。提出的FEM-IE基于电场矢量Helmholtz方程。卷曲符合向量有限元用于离散内部区域,而发散符合表面要素用于IE截断曲面。通过使用Calderon投影仪,可以恢复IE部分中的对称性。此外,使用单级QR算法可加速IE计算。这样可以减少内存和计算时间。此外,它允许对外部问题使用不同的格林函数,而只需对算法进行少量修改即可。用非常有效的预条件共轭梯度(PCCG)和p乘性Schwarz预条件器求解方程组。

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