DocumentCode :
3589819
Title :
Dynamic fault tree analysis based on pivotal decomposition of the structure function
Author :
Daochuan Ge ; Yanhua Yang ; Qiang Chou ; Ruoxing Zhang
Author_Institution :
Nucl. Sci. & Eng., Shanghai Jiao Tong Univ., Shanghai, China
fYear :
2014
Firstpage :
501
Lastpage :
507
Abstract :
Many fault-tolerant systems in real life are involved in sequence- and function-dependent failure behaviors, in which the failure of these systems depends not only on the combination of basic events, but also on their failure orders. Dynamic fault tree (DFT) as an extension of the conventional static fault tree is widely used to model such systems. The existing analytical approaches for reliability evaluation of DFT are mainly Markov-based, Inclusion-exclusion-based and sequential-BDD - based methods. Those approaches either suffer from the problem of state-space explosion or are subjected to combinatorial explosion knot or have small flaws. To overcome the shortcomings of the existing methods, a pivotal decomposition scheme upon the structure function of a given DFT is proposed in this paper. The proposed approach rewrites the structure function into equivalent sum-of-disjoint products based on Shannon decomposition theorem and exactly calculates the unreliability of non-repairable dynamic systems modeled by DFT. In addition, the proposed method is efficient compared with existing approaches. The application and advantages of the proposed method are demonstrated by analysis of a case study.
Keywords :
fault trees; reliability theory; DFT; Shannon decomposition theorem; combinatorial explosion knot; decomposition scheme; dynamic fault tree analysis; fault-tolerant systems; nonrepairable dynamic systems; pivotal decomposition; reliability evaluation; static fault tree; structure function; sum-of-disjoint products; Binary trees; Discrete Fourier transforms; Explosions; Fault trees; Indexes; Logic gates; Mathematical model; dynamic fault tree; pivotal decomposition scheme; quantitative analysis; sum of disjoint products;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Reliability, Maintainability and Safety (ICRMS), 2014 International Conference on
Print_ISBN :
978-1-4799-6631-8
Type :
conf
DOI :
10.1109/ICRMS.2014.7107247
Filename :
7107247
Link To Document :
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