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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Performance of Preconditioned Nonstationary Methods for Electromagnetic Scattering From One Dimensional Dielectric Rough Surfaces
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Performance of Preconditioned Nonstationary Methods for Electromagnetic Scattering From One Dimensional Dielectric Rough Surfaces

机译:一维介电粗糙表面电磁散射的预处理非平稳方法的性能

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摘要

For the analysis of electromagnetic scattering from one dimensional dielectric randomly rough surfaces, we apply the right-preconditioning technique to three nonstationary iterative algorithms, namely, the generalized minimal residual (GMRES), conjugate gradient squared (CGS), and biconjugate gradient stabilized (BiCGSTAB). The spectral acceleration technique is also utilized to expedite computation of matrix-vector product. Among the nonstationary methods considered, with the right-preconditioning (RP) applied, GMRES-RP is the most robust, followed by BiCGSTAB-RP, with CGS-RP falling behind. In terms of number of iterations to achieve convergence, for cases when they all converge, GMRES-RP requires the most whereas BiCGSTAB-RP the least, with CGS-RP slightly more demanding than BiCGSTAB-RP. However, in terms of run time, GMRES-RP is the most efficient, followed by BiCGSTAB-RP, and CGS-RP is the least efficient. This relative performance is in contrast to the unpreconditioned case as reported in the literature, which speaks of the impact of the adopted right-preconditioning on the spectral distribution of these nonstationary algorithms.
机译:为了分析一维介电随机粗糙表面的电磁散射,我们将正确的预处理技术应用于三种非平稳迭代算法,即广义最小残差(GMRES),共轭梯度平方(CGS)和双共轭梯度稳定(BiCGSTAB) )。频谱加速技术还用于加快矩阵矢量乘积的计算。在考虑的非平稳方法中,应用了正确的预处理(RP)的GMRES-RP是最可靠的,其次是BiCGSTAB-RP,而CGS-RP则落后。就实现收敛的迭代次数而言,对于全部收敛的情况,GMRES-RP要求最高,而BiCGSTAB-RP要求最低,而CGS-RP的要求略高于BiCGSTAB-RP。但是,就运行时间而言,GMRES-RP效率最高,其次是BiCGSTAB-RP,而CGS-RP效率最低。这种相对性能与文献中报道的未预处理的情况相反,后者谈到了采用的正确预处理对这些非平稳算法的频谱分布的影响。

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