DocumentCode
1260847
Title
Computationally efficient and numerically stable reliability bounds for repairable fault-tolerant systems
Author
Carrasco, Juan A.
Author_Institution
Dept. d´´Enginyeria Electron., Univ. Politecnica de Catalunya, Barcelona, Spain
Volume
51
Issue
3
fYear
2002
fDate
3/1/2002 12:00:00 AM
Firstpage
254
Lastpage
268
Abstract
The transient analysis of large continuous time Markov reliability models of repairable fault-tolerant systems is computationally expensive due to model stiffness. We develop and analyze a method to compute bounds for a measure defined on a particular, but quite wide class of continuous time Markov models, encompassing both exact and bounding continuous time Markov reliability models of fault-tolerant systems. The method is numerically stable and computes the bounds with well-controlled and specifiable-in-advance error. Computational effort can be traded off with bounds accuracy. For a class of continuous time Markov models, class C", including typical failure/repair reliability models with exponential failure and repair time distributions and repair in every state with failed components, the method can yield reasonably tight bounds at a very small computational cost. The method builds upon a recently proposed numerical method for the transient analysis of continuous time Markov models called regenerative randomization
Keywords
Markov processes; fault tolerant computing; numerical stability; computational cost; computationally efficient reliability bounds; continuous time Markov models; exact bounding continuous time Markov reliability models; exponential failure; failure/repair reliability models; fault-tolerant systems; large continuous time Markov reliability models; model stiffness; numerical method; numerically stable reliability bounds; regenerative randomization; repair time distributions; repairable fault-tolerant systems; specifiable-in-advance error; transient analysis; Fault tolerance;
fLanguage
English
Journal_Title
Computers, IEEE Transactions on
Publisher
ieee
ISSN
0018-9340
Type
jour
DOI
10.1109/12.990125
Filename
990125
Link To Document