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Matrix equilibration in method of moment solutions of surface integral equations

机译:表面积分方程矩解法中的矩阵平衡

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摘要

Basic theory of matrix equilibration is presented, relating it to other techniques for decreasing the condition number of matrix equations obtained by the method of moments (MOM) applied to surface integral equations (SIEs). It is shown that matrix equilibration is a general technique that can be used for both (1) balancing field and source quantities in SIEs, which is used to decrease the condition number in the case of SIEs of mixed type and high contrast in material properties, and (2) scaling basis and test functions in MOM, which is used to decrease the condition number in the case of higher-order bases and patches of different sizes. In particular, it is demonstrated that a combination of such balancing and scaling can be performed using simple matrix equilibration based on magnitudes of diagonal elements and 2-norms of rows/columns of the MOM matrix.
机译:提出了矩阵平衡的基本理论,并将其与其他减少通过应用到表面积分方程(SIE)的矩量法(MOM)获得的矩阵方程的条件数的技术联系起来。结果表明,矩阵平衡是一种通用技术,可同时用于(1)SIE中的场和源数量平衡,在混合类型和材料特性高对比度的SIE情况下,该方法可用于减少条件数, (2)在MOM中缩放基础和测试功能,用于在不同大小的高阶基础和补丁的情况下减少条件数。特别地,证明了可以基于对角元素的大小和MOM矩阵的行/列的2范数的大小,使用简单的矩阵平衡来执行这种平衡和缩放的组合。

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