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On sampling algorithms in multilevel QR factorization method for magnetoquasistatic analysis of integrated circuits over multilayered lossy substrates

机译:多层有损衬底上集成电路的准静态分析的多级QR分解方法中的采样算法

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摘要

This paper proposes improvements in the row and column samplings of the multilevel QR factorization method known as IES/sup 3/, a fast integral equation solver previously proposed for efficient three-dimensional (3-D) parameter extraction. First, a rigorous Gram-Schmidt row sampling is developed to replace the row sampling algorithm in IES/sup 3/, leading to a more stable algorithm. Second, to further enhance the efficiency of column sampling, a new scheme based on the idea of locating the interpolation points is presented. Error analyses indicate that the proposed schemes have higher accuracies than the original sampling in IES/sup 3/, especially when the number of sampled points is small. The IES/sup 3/ that uses one of these improved algorithms is called improved multilevel matrix QR factorization (IMLMQRF). These IMLMQRFs are applied in the magnetoquasistatic analysis of printed circuits on multilayered lossy medium for extractions of inductances and resistances. The frequency dependency of such parameters is also illustrated.
机译:本文提出了对称为IES / sup 3 /的多级QR分解方法的行和列采样的改进,这是先前提出的用于快速进行三维(3-D)参数提取的快速积分方程求解器。首先,开发了严格的Gram-Schmidt行采样来代替IES / sup 3 /中的行采样算法,从而使算法更加稳定。其次,为了进一步提高列采样的效率,提出了一种基于定位插值点的思想的新方案。误差分析表明,与IES / sup 3 /中的原始采样相比,所提出的方案具有更高的精度,尤其是在采样点数量少的情况下。使用这些改进算法之一的IES / sup 3 /被称为改进多级矩阵QR因式分解(IMLMQRF)。这些IMLMQRF用于多层有损耗介质上印刷电路的磁准静态分析,以提取电感和电阻。还示出了这种参数的频率依赖性。

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