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首页> 外文期刊>IEEE Transactions on Advanced Packaging >An efficient solver for the three-dimensional capacitance of the interconnects in high speed digital circuit by the multiresolution method of moments
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An efficient solver for the three-dimensional capacitance of the interconnects in high speed digital circuit by the multiresolution method of moments

机译:利用矩的多分辨率方法有效解决高速数字电路中互连的三维电容问题

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摘要

The computation of the equivalent capacitances for three-dimensional (3-D) interconnects features large memory usage and long computing time. In this paper, a matrix sparsification approach based on multiresolution representation is applied with the method of moments (MoM) to calculate 3-D capacitances of interconnects in a layered media. Instead of direct expansion of the charge distribution by the orthogonal wavelet basis functions, the large full matrix resulting from discretization of the integral equations is taken as a discrete image and sparsified by two-dimensional (2-D) multiresolution representations. The inverse of the obtained sparse matrix is efficiently implemented by Schultz's iterative approach. Several numerical examples are given and the results obtained show that the proposed method significantly sparsifies the matrix equation and the capacitance parameters computed by the matrix equation with high sparsity agree well with the results of other reports and those computed by an established capacitance extractor FASTCAP.
机译:三维(3-D)互连的等效电容的计算具有较大的内存使用量和较长的计算时间。在本文中,将基于多分辨率表示的矩阵稀疏化方法与矩量法(MoM)相结合,以计算分层介质中互连的3-D电容。代替通过正交小波基函数直接扩展电荷分布,将积分方程离散化后得到的大全矩阵作为离散图像,并通过二维(2-D)多分辨率表示进行稀疏化。通过Schultz的迭代方法可以有效地实现所获得的稀疏矩阵的逆。给出了几个数值例子,结果表明,该方法显着稀疏了矩阵方程,由矩阵方程计算出的电容参数具有较高的稀疏性,与其他报道的结果和建立的电容提取器FASTCAP计算的结果吻合良好。

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