DocumentCode
1341910
Title
Efficient Construction of Minimal Cut Sets from Fault Trees
Author
Garribba, S. ; Mussio, P. ; Naldi, F. ; Reina, G. ; Volta, G.
Author_Institution
CESNEF-Nucl. Engng. Dept.; Politecnico di Milano; Via G. Ponzio 34/3; Milano 20133 ITALY.
Issue
2
fYear
1977
fDate
6/1/1977 12:00:00 AM
Firstpage
88
Lastpage
94
Abstract
A formal method and an algorithm are presented to determine minimal cut sets (MCSs) from fault trees. The method is based upon segmenting the tree, constructing MCSs of subtrees and subsequent expanding into the MCS of the original tree. The major advantage of the method is the direct determination of MCSs up to any order required. More particularly, the algorithm DICOMICS allows straightforward analyses for all those cases (large trees, high order cut sets, repeated elements) where present combinatorial and Monte Carlo techniques are not effective. Compared with other structural algorithms now in use, DICOMICS provides a near optimal effective construction of MCSs. Thus, even when there are many redundant cut sets, computer implementations yield a substantial reduction of computing steps and effort. Hand calculation and interactive programming are also possible.
Keywords
Algorithm design and analysis; Calculus; Fault diagnosis; Fault trees; Monte Carlo methods; Probability; Read only memory; Reliability; Set theory; Testing; Algorithm; DICOMICS; Fault tree; Minimal cut set;
fLanguage
English
Journal_Title
Reliability, IEEE Transactions on
Publisher
ieee
ISSN
0018-9529
Type
jour
DOI
10.1109/TR.1977.5220058
Filename
5220058
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