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Null-Field Preconditioner With Selected Far-Field Contribution for 3-D Full-Wave EFIE

机译:具有3-D全波EFIE选定远场贡献的零场前置调节器

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摘要

In this paper, a stable and effective preconditioner for the method of moments-based electric field integral equation matrix, based on the null-field method, is presented to expedite the convergence of Krylov subspace-based fast iterative solution. The preconditioner is computed from all near-field blocks and selected far-field blocks in accordance with the null-field procedure. The final form of the preconditioner is block diagonal, and therefore generates no additional fill-ins in its inverse and is also amenable to parallelization. A complexity analysis is presented to show the near-linear cost of preconditioner construction and usage in terms of computation time and memory. The numerical experiments with a sequential implementation demonstrate on an average 1.5-3× speed-up in the iterative solution time over threshold-dependent incomplete LU-based preconditioners.
机译:本文提出了一种基于空场法的矩量电场积分方程矩阵方法的稳定有效预处理器,以加快基于Krylov子空间的快速迭代解的收敛性。根据空域过程,从所有近场块和选定的远场块中计算出预处理器。预处理器的最终形式是块对角线,因此,其倒置形式不会产生其他填充,并且也可以并行化。进行了复杂性分析,以显示在计算时间和内存方面预处理器构建和使用的近乎线性的成本。顺序执行的数值实验表明,与基于阈值的不完全基于LU的预处理器相比,迭代求解时间平均提高了1.5-3倍。

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