DocumentCode
1209311
Title
Unified architecture for divide and conquer based tridiagonal system solvers
Author
López, Juan ; Zapata, Emilio L.
Author_Institution
Dept. Arquitectura de Computadores, Malaga Univ., Spain
Volume
43
Issue
12
fYear
1994
fDate
12/1/1994 12:00:00 AM
Firstpage
1413
Lastpage
1425
Abstract
The solution of tridiagonal systems is a topic of great interest in many areas of numerical analysis. Several algorithms have recently been proposed for solving triadiagonal systems based on the Divide and Conquer (DC) strategy. In this work we propose a unified parallel architecture for DC algorithms which present the data flows of the Successive Doubling, Recursive Doubling and Parallel Cyclic Reduction methods. The architecture is based in the perfect unshuffle permutation, which transforms these data flows into a constant geometry one. The partition of the data arises in a natural manner, giving way to a systolic data flow with a wired control section. We conclude that the constant geometry Cyclic Reduction architecture is the most appropriate one for solving tridiagonal systems and, from the point of view of integration in VLSI technology, is the one which uses the least amount of area and the smallest number of pins
Keywords
divide and conquer methods; parallel architectures; Parallel Cyclic Reduction methods; Recursive Doubling; Successive Doubling; VLSI; constant geometry cyclic reduction architecture; divide and conquer based tridiagonal system solvers; systolic data flow; unified architecture; unified parallel architecture; wired control section; Algorithm design and analysis; Appropriate technology; Chromium; Equations; Geometry; Numerical analysis; Parallel architectures; Parallel processing; Partitioning algorithms; Very large scale integration;
fLanguage
English
Journal_Title
Computers, IEEE Transactions on
Publisher
ieee
ISSN
0018-9340
Type
jour
DOI
10.1109/12.338101
Filename
338101
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