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Hybrid h- and p-Type Multiplicative Schwarz (h-p-MUS) Preconditioned Algorithm of Higher-Order FE-BI-MLFMA for 3D Scattering

机译:用于3D散射的高阶FE-BI-MLFMA的混合h型和p型乘性Schwarz(h-p-MUS)预处理算法

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摘要

A hybrid h- and p-Type multiplicative Schwarz (h-p-MUS) preconditioned algorithm is proposed to improve efficiency of higher-order finite element-boundary integral-multilevel fast multipole algorithm (FE-BI-MLFMA) for 3D scattering in this paper. An h-p-MUS precondtioner is first constructed for the FEM matrix obtained by using vector higher-order hierarchical basis functions. Numerical experiments show that this preconditioner can offer a better efficiency both in CPU time and memory requirement than the h-MUS and the p-MUS preconditioners. Then this h-p-MUS preconditioner for the FEM matrix is applied to different algorithms of FE-BI-MLMFA. Analysis and Numerical results show that the h-p-MUS preconditioned conventional algorithm (h-p-MUS-CA) has a better efficiency over other h-p-MUS preconditioned algorithms. A variety of numerical experiments are performed for large objects in this paper, demonstrating that this h-p-MUS-CA exhibits superior efficiency in the CPU time and memory, and greatly improves the capability of the higher-order FE-BI-MLFMA.
机译:本文提出了一种混合的h型和p型乘性Schwarz(h-p-MUS)预处理算法,以提高3D散射的高阶有限元边界积分多级快速多极算法(FE-BI-MLFMA)的效率。首先通过使用向量高阶层次基函数为FEM矩阵构建h-p-MUS预处理器。数值实验表明,与h-MUS和p-MUS预处理器相比,该预处理器可以在CPU时间和内存需求方面提供更高的效率。然后,将这种用于FEM矩阵的h-p-MUS预处理器应用于FE-BI-MLMFA的不同算法。分析和数值结果表明,与其他h-p-MUS预处理算法相比,h-p-MUS预处理常规算法(h-p-MUS-CA)具有更好的效率。本文针对大型物体进行了各种数值实验,证明了这种h-p-MUS-CA在CPU时间和内存方面表现出卓越的效率,并极大地提高了高阶FE-BI-MLFMA的性能。

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