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A recursive algorithm for the inversion of matrices with circulant blocks

机译:具有循环块的矩阵求逆的递归算法

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摘要

We investigate the recursive inversion of matrices with circulant blocks. Matrices of this type appear in several applications of Computational Electromagnetics and in the numerical solution of integral equations with the boundary-element method. The inversion is based on the diagonalization of each circulant block by means of the discrete Fourier transform and the application of a recursive algorithm for the inversion of the matrix with diagonal blocks, determined by the eigenvalues of each block. The efficiency of the recursive inversion is exhibited by determining its computational complexity. An implementation of the algorithm in MATLAB is given and numerical results are presented to demonstrate the efficiency in terms of CPU time of our approach. (C) 2006 Elsevier Inc. All rights reserved.
机译:我们研究了循环块矩阵的递归反演。这种类型的矩阵出现在计算电磁学的一些应用中,并且出现在边界元法积分方程的数值解中。反演是基于离散块傅立叶变换对每个循环块的对角化以及递归算法的应用,该算法用于对角线块的矩阵反演,该对角线块由每个块的特征值确定。递归反演的效率通过确定其计算复杂性来体现。给出了该算法在MATLAB中的实现,并给出了数值结果,以证明我们方法的效率。 (C)2006 Elsevier Inc.保留所有权利。

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