DocumentCode
3024832
Title
Parallelization of direct algorithms using multisplitting methods in grid environments
Author
Bahi, Jacques M. ; Couturier, Raphaël
Author_Institution
Lab. de Informatique, Univ. de Franche-Comte, Belfort, France
fYear
2005
fDate
4-8 April 2005
Abstract
The goal of this paper is to introduce a new approach to the building of efficient distributed linear system solvers. The starting point of the results of this paper lies in the fact that the parallelization of direct algorithms requires frequent synchronizations in order to obtain the solution for a linear problem. In a grid computing environment, communication times are significant and the bandwidth is variable, therefore frequent synchronizations slow down performances. Thus it is desirable to reduce the number of synchronizations in a parallel direct algorithm. Inspired from multisplitting techniques, the method we present consists in solving several linear problems obtained by splitting the original one. Each linear system is solved independently on a cluster by using the direct method. This paper uses the theoretical results of [J.M. Bahi et al. (1997)] in order to build coarse grained algorithms designed for solving linear systems in the grid computing context.
Keywords
grid computing; iterative methods; linear algebra; parallel algorithms; synchronisation; distributed linear system solver; grid environment; multisplitting method; parallel direct algorithm; synchronization; Algorithm design and analysis; Bandwidth; Clustering algorithms; Context; Convergence; Frequency synchronization; Grid computing; Iterative algorithms; Linear systems; Parallel processing;
fLanguage
English
Publisher
ieee
Conference_Titel
Parallel and Distributed Processing Symposium, 2005. Proceedings. 19th IEEE International
Print_ISBN
0-7695-2312-9
Type
conf
DOI
10.1109/IPDPS.2005.330
Filename
1420194
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