首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part O. Journal of Risk and Reliability >Integrated importance of multi-state fault tree based on multi-state multi-valued decision diagram
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Integrated importance of multi-state fault tree based on multi-state multi-valued decision diagram

机译:基于多状态多值决策图的多状态故障树的综合重要性

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Integrated importance measures have been developed to study the effect of component state probabilities and state transition rates on the multi-state system performance, identifying the weakest component to facilitate the system maintenance and optimization activities. This article proposes an analytical method based on multi-state multi-valued decision diagram for computing the integrated importance measure values. Following a discussion of decomposition and physical meaning of integrated importance measures, the modeling method of multi-state multi-valued decision diagram based on multi-state fault tree analysis is introduced. A five-step integrated importance measure analysis approach based on multistate multi-valued decision diagram is then proposed. Two case studies are implemented to demonstrate the presented methods. Complexity analysis shows that the multi-state multi-valued decision diagram-based method is more computationally efficient than the existing method using Markov-Bayesian networks.
机译:已开发出综合重要性度量,以研究组件状态概率和状态转换速率对多状态系统性能的影响,确定最弱的组件以促进系统维护和优化活动。本文提出了一种基于多状态多值决策图的分析方法,用于计算综合重要性度量值。在讨论了综合重要性测度的分解和物理意义之后,介绍了基于多状态故障树分析的多状态多值决策图建模方法。提出了一种基于多状态多值决策图的五步综合重要性测度分析方法。进行了两个案例研究以证明所提出的方法。复杂度分析表明,基于多状态多值决策图的方法比现有的使用马尔可夫-贝叶斯网络的方法具有更高的计算效率。

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