JOURNAL ARTICLE

Permuting Sparse Rectangular Matrices into Block-Diagonal Form

Cevdet AykanatAli PınarÜmit V. Çatalyürek

Year: 2004 Journal:   SIAM Journal on Scientific Computing Vol: 25 (6)Pages: 1860-1879   Publisher: Society for Industrial and Applied Mathematics

Abstract

This work investigates the problem of permuting a sparse rectangular matrix into block diagonal form. Block diagonal form of a matrix grants an inherent parallelism for the solution of the deriving problem, as recently investigated in the context of mathematical programming, LU factorization and QR factorization. We propose graph and hypergraph models to represent the nonzero structure of a matrix, which reduce the permutation problem to those of graph partitioning by vertex separator and hypergraph partitioning, respectively. Besides proposing the models to represent sparse matrices and investigating related combinatorial problems, we provide a detailed survey of relevant literature to bridge the gap between different societies, investigate existing techniques for partitioning and propose new ones, and finally present a thorough empirical study of these techniques. Our experiments on a wide range of matrices, using state-of-the-art graph and hypergraph partitioning tools MeTiS and PaToH, revealed that the proposed methods yield very effective solutions both in terms of solution quality and run time.

Keywords:
Hypergraph Mathematics Diagonal Bipartite graph Sparse matrix Block matrix Factorization Combinatorics Vertex (graph theory) Graph Algorithm Eigenvalues and eigenvectors Gaussian

Metrics

155
Cited By
6.49
FWCI (Field Weighted Citation Impact)
38
Refs
0.97
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

VLSI and FPGA Design Techniques
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Interconnection Networks and Systems
Physical Sciences →  Computer Science →  Computer Networks and Communications
Embedded Systems Design Techniques
Physical Sciences →  Computer Science →  Hardware and Architecture

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