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首页> 外文期刊>Systems, Man and Cybernetics, Part A: Systems and Humans, IEEE Transactions on >Combinatorial Algorithm for Reliability Analysis of Multistate Systems With Propagated Failures and Failure Isolation Effect
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Combinatorial Algorithm for Reliability Analysis of Multistate Systems With Propagated Failures and Failure Isolation Effect

机译:具有传播故障和故障隔离效果的多状态系统可靠性分析的组合算法

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This paper considers the reliability analysis of multistate systems (MSSs) subject to propagated failure with global effect (PFGE) and failure isolation effect. The PFGE can be caused by an imperfect fault coverage despite the presence of fault-tolerant mechanism or by a destructive effect of failures that originate from some system components on other components. The failure isolation effect is caused by functional dependence among system components, where the failure of some component can prevent the propagation of failures that originate from other components within the same system. Existing approaches for simultaneously addressing PFGE and failure isolation are limited to binary-state systems in which the system and its components exhibit two and only two states: operation or failure. In practice, however, many systems are MSS in which the system and/or its components may exhibit multiple performance levels corresponding to different states ranging from perfect operation to complete failure. In this paper, a separable and combinatorial methodology is proposed for evaluating the reliability of MSS subject to both PFGE and the failure isolation effect. The proposed method has no limitation on the type of time-to-failure distributions for the system components and is applicable to MSS with any arbitrary system structure. Application and advantages of the proposed method are illustrated through a detailed analysis of an example of a multistate memory system.
机译:本文考虑了具有全局效应(PFGE)和失效隔离效应的传播故障的多状态系统(MSS)的可靠性分析。尽管存在容错机制,但故障覆盖范围不完善可能会导致PFGE,或者由某些系统组件产生的故障对其他组件的破坏性影响也可能导致PFGE。故障隔离效果是由系统组件之间的功能依赖性引起的,其中某些组件的故障可以防止传播源自同一系统内其他组件的故障。同时解决PFGE和故障隔离的现有方法仅限于二进制状态系统,在该系统中,系统及其组件仅显示两种状态:运行或故障。然而,实际上,许多系统是MSS,其中系统和/或其组件可能表现出与从完美运行到完全故障的不同状态相对应的多个性能级别。本文提出了一种可分离和组合的方法来评估受PFGE和失效隔离效果影响的MSS的可靠性。所提出的方法对系统组件的失效时间分布类型没有限制,并且适用于具有任意系统结构的MSS。通过对多状态存储系统示例的详细分析,说明了所提出方法的应用和优点。

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