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Reliability analysis of monotone coherent multi-state systems based on Bayesian networks
被引量:
2
1
作者
binghua song
Zhongbao Zhou
+2 位作者
Chaoqun Ma
Jinglun Zhou
Shaofeng Geng
《Journal of Systems Engineering and Electronics》
SCIE
EI
CSCD
2016年第6期1326-1335,共10页
The Bayesian networks (BNs) provide a robust probabilistic method of reasoning under uncertainty and have been successfully applied to a variety of real-world tasks. Aiming to explore the capabilities of the BN formal...
The Bayesian networks (BNs) provide a robust probabilistic method of reasoning under uncertainty and have been successfully applied to a variety of real-world tasks. Aiming to explore the capabilities of the BN formalism in reliability analysis of monotone coherent multi-state systems, the BNs are compared with a popular tool for reliability analysis of monotone coherent multi-state systems, namely the multi-state fault trees (MFTs). It is shown that any MFT can be directly mapped into BN and the basic inference techniques on the latter may be used to obtain classical parameters computed from the former (i.e. probability distribution of top variable, minimal upper vectors and maximum lower vectors for any performance level, importance measures of components). Furthermore, some additional information can be obtained by using BN, both at the modeling and analysis level. At the modeling level, several restrictive assumptions implicit in the MFT methodology can be removed and various kinds of dependencies among components can be accommodated. At the analysis level, a general diagnostic analysis can be performed. The comparison of these methods is illustrated by an example of the water supply system. © 2016 Beijing Institute of Aerospace Information.
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关键词
Bayesian
networks
Probability
distributions
RELIABILITY
Reliability
theory
VECTORS
Water
supply
Water
supply
systems
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职称材料
题名
Reliability analysis of monotone coherent multi-state systems based on Bayesian networks
被引量:
2
1
作者
binghua song
Zhongbao Zhou
Chaoqun Ma
Jinglun Zhou
Shaofeng Geng
机构
School of Business Administration
School of Information System and Management
College of Computer Science and Electronic Engineering
出处
《Journal of Systems Engineering and Electronics》
SCIE
EI
CSCD
2016年第6期1326-1335,共10页
基金
supported by the National Natural Science Foundation of China(70901024
71371067)
the Chinese Postdoctoral Science Foundation
文摘
The Bayesian networks (BNs) provide a robust probabilistic method of reasoning under uncertainty and have been successfully applied to a variety of real-world tasks. Aiming to explore the capabilities of the BN formalism in reliability analysis of monotone coherent multi-state systems, the BNs are compared with a popular tool for reliability analysis of monotone coherent multi-state systems, namely the multi-state fault trees (MFTs). It is shown that any MFT can be directly mapped into BN and the basic inference techniques on the latter may be used to obtain classical parameters computed from the former (i.e. probability distribution of top variable, minimal upper vectors and maximum lower vectors for any performance level, importance measures of components). Furthermore, some additional information can be obtained by using BN, both at the modeling and analysis level. At the modeling level, several restrictive assumptions implicit in the MFT methodology can be removed and various kinds of dependencies among components can be accommodated. At the analysis level, a general diagnostic analysis can be performed. The comparison of these methods is illustrated by an example of the water supply system. © 2016 Beijing Institute of Aerospace Information.
关键词
Bayesian
networks
Probability
distributions
RELIABILITY
Reliability
theory
VECTORS
Water
supply
Water
supply
systems
Keywords
Bayesian networks
Probability distributions
Reliability
Reliability theory
Vectors
Water supply
Water supply systems
分类号
TB114.3 [理学—概率论与数理统计]
TP18 [自动化与计算机技术—控制理论与控制工程]
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Reliability analysis of monotone coherent multi-state systems based on Bayesian networks
binghua song
Zhongbao Zhou
Chaoqun Ma
Jinglun Zhou
Shaofeng Geng
《Journal of Systems Engineering and Electronics》
SCIE
EI
CSCD
2016
2
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