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Sparsified Multi-level Adaptive Cross Approximation-Characteristic Basis Function Method for Fast Electromagnetic Scattering Analysis

机译:快速电磁散射分析的稀疏多级自适应交叉近似特征基函数方法

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摘要

With the increase of block size, the amount of calculation and storage of the recently developed sparsified adaptive cross approximation for compressing the impedance submatrix of well-separated blocks will become as large as O(s(2)M) and O(sM), respectively, where M is the number of unknowns in each block, and s is the effective rank of the impedance submatrix. To address this issue, an improved sparsified adaptive cross approximation, termed as sparsified multi-level adaptive cross approximation, is presented in this article. The sparsified multi-level adaptive cross approximation uses the multi-level adaptive cross approximation to exhibit a faster and sparser compression of the sparsified adaptive cross approximation inner matrices. As a result, the computational time and storage can be reduced to O(s(3)) + O(sM) and O(s(2)) + O(Mlogs), respectively, where log s s M. Furthermore, the characteristic basis function method is used to further reduce the storage of the sparsified multi-level adaptive cross approximation by compressing its outer matrices. Numerical results about the electromagnetic scattering are given to verify the advantages of the proposed sparsified multi-level adaptive cross approximation-characteristic basis function method.
机译:随着块大小的增加,最近开发的稀疏自适应交叉近似的计算和存储量将达到压缩O(s(2)M)和O(sM)的大小,分别是,其中M是每个块中未知数的数量,s是阻抗子矩阵的有效秩。为了解决这个问题,本文提出了一种改进的稀疏自适应交叉逼近,称为稀疏多级自适应交叉逼近。稀疏的多级自适应交叉逼近使用多级自适应交叉逼近来展现稀疏的自适应交叉逼近内部矩阵的更快且稀疏的压缩。结果,计算时间和存储量可以分别减少为O(s(3))+ O(sM)和O(s(2))+ O(Mlogs),其中log s s M此外,特征基函数方法被用于通过压缩其外部矩阵来进一步减少稀疏的多级自适应交叉逼近的存储。给出了有关电磁散射的数值结果,以验证所提出的稀疏多级自适应交叉逼近特征基函数方法的优点。

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