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A recursive bipartitioning algorithm for permuting sparse square matrices into block diagonal form with overlap

机译:一种将稀疏平方矩阵置换为重叠的块对角线形式的递归双向划分算法

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摘要

We investigate the problem of symmetrically permuting a square sparse matrix into a block diagonal form with overlap. This permutation problem arises in the parallelization of an explicit formulation of the multiplicative Schwarz preconditioner and a more recent block overlapping banded linear solver as well as its application to general sparse linear systems. In order to formulate this permutation problem as a graph theoretical problem, we define a constrained version of the multiway graph partitioning by vertex separator (GPVS) problem, which is referred to as the ordered GPVS (oGPVS) problem. However, existing graph partitioning tools are unable to solve the oGPVS problem. So, we also show how the recursive bipartitioning framework can be utilized for solving the oGPVS problem. For this purpose, we propose a left-to-right bipartitioning approach together with a novel vertex fixation scheme so that existing 2-way GPVS tools that support fixed vertices can be effectively and efficiently utilized in the recursive bipartitioning framework. Experimental results on a wide range of matrices confirm the validity of the proposed approach. © 2013 Society for Industrial and Applied Mathematics.
机译:我们研究将方形稀疏矩阵对称排列成具有重叠的块对角线形式的问题。这个置换问题出现在乘法式Schwarz预调节器的显式公式与更新的块重叠带状线性求解器的并行化及其在通用稀疏线性系统中的应用中。为了将这种置换问题表达为图论问题,我们定义了通过顶点分隔符(GPVS)问题进行的多路图分区的约束版本,称为有序GPVS(oGPVS)问题。但是,现有的图分区工具无法解决oGPVS问题。因此,我们还展示了如何将递归分割框架用于解决oGPVS问题。为此,我们提出了一种从左到右的分割方法以及一种新颖的顶点固定方案,以便可以在递归分割框架中有效且有效地利用支持固定顶点的现有2路GPVS工具。在各种矩阵上的实验结果证实了该方法的有效性。 ©2013工业和应用数学学会。

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