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首页> 外文期刊>Reliability Engineering & System Safety >Multi-state component criticality analysis for reliability improvement in multi-state systems
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Multi-state component criticality analysis for reliability improvement in multi-state systems

机译:用于改善多状态系统可靠性的多状态组件重要性分析

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摘要

This paper evaluates and implements composite importance measures (CIM) for multi-state systems with multi-state components (MSMC). Importance measures are frequently used as a means to evaluate and rank the impact and criticality of individual components within a system yet they are less often used as a guide to prioritize system reliability improvements. For multi-state systems, previously developed measures sometimes are not appropriate and they do not meet all user needs. This study has two inter-related goals: first, to distinguish between two types of importance measures that can be used for evaluating the criticality of components in MSMC with respect to multi-state system reliability, and second, based on the CIM, to develop a component allocation heuristic to maximize system reliability improvements. The heuristic uses Monte-Carlo simulation together with the max-flow min-cut algorithm as a means to compute component CIM. These measures are then transformed into a cost-based composite metric that guides the allocation of redundant elements into the existing system. Experimental results for different system complexities show that these new CIM can effectively estimate the criticality of components with respect to multi-state system reliability. Similarly, these results show that the CIM-based heuristic can be used as a fast and effective technique to guide system reliability improvements.
机译:本文评估和实施具有多状态组件(MSMC)的多状态系统的复合重要性度量(CIM)。重要性度量通常用作评估和排名系统中各个组件的影响和重要性的一种手段,而很少用作优先考虑系统可靠性改进的指南。对于多状态系统,以前开发的措施有时不合适,并且不能满足所有用户需求。这项研究有两个相互关联的目标:第一,区分两种可用于评估MSMC组件在多状态系统可靠性方面的关键性的重要程度;第二,基于CIM,进行开发组件分配试探法,以最大程度地提高系统可靠性。该启发式方法将蒙特卡洛模拟与最大流最小割算法一起用作计算组件CIM的方法。然后将这些措施转换为基于成本的综合指标,该指标可将冗余元素分配到现有系统中。针对不同系统复杂性的实验结果表明,这些新的CIM可以有效地估计组件在多状态系统可靠性方面的关键性。同样,这些结果表明,基于CIM的启发式可以用作指导系统可靠性提高的快速有效的技术。

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