DocumentCode
1517593
Title
The full-use-of-suitable-spares (FUSS) approach to hardware reconfiguration for fault-tolerant processor arrays
Author
Chean, Mengly ; Fortes, Jose A B
Author_Institution
Shell Dev. Co., Houston, TX, USA
Volume
39
Issue
4
fYear
1990
fDate
4/1/1990 12:00:00 AM
Firstpage
564
Lastpage
571
Abstract
A general approach to hardware recognition is proposed for VLSI/WSI fault-tolerant processor arrays. The technique, called full use of suitable spares (FUSS), uses an indicator vector, the surplus vector, to guide the replacement of faulty processors within an array. Analytical study of the general FUSS algorithm shows that there is a linear relationship between the array size and the area of interconnect required for reconfiguration to be 100% successful. In an instance of FUSS, called simple FUSS, reconfiguration is done by shifting up to or down the surplus vector´s entries. The surplus vector is progressively updated after each column is reconfigured. The reconfiguration is successful when the surplus vector becomes null. Simple FUSS is discussed in detail and evaluated. Simulations show that when the number of faulty processors is equal to that of space processors, simple FUSS can achieve a probability of survival as high as 99%
Keywords
VLSI; electronic engineering computing; fault tolerant computing; VLSI; WSI; fault-tolerant processor arrays; full-use-of-suitable repairs approach; hardware reconfiguration; indicator vector; interconnect; surplus vector; Approximation algorithms; Circuit faults; Circuit testing; Combinatorial mathematics; Cost function; Fault tolerance; Hardware; Random access memory; System testing; Vectors;
fLanguage
English
Journal_Title
Computers, IEEE Transactions on
Publisher
ieee
ISSN
0018-9340
Type
jour
DOI
10.1109/12.54851
Filename
54851
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