Reliability of phased-mission systems subject to competing failures

Chaonan Wang, L. Xing, G. Levitin
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引用次数: 1

Abstract

This paper considers the reliability analysis of phased-mission systems (PMS) subject to competing failure propagation and failure isolation effects. A propagated failure with global effect (PFGE) originating from a system component is a failure that causes damage to all other system components besides the component itself. However, in systems subject to the functional dependence (FDEP) behavior, the failure of a trigger component can make the system insensitive to PFGE originating from the dependent components, i.e., the failure isolation effect. On the other hand, if the trigger component is still functioning when the PFGE of a dependent component happens, the failure propagation effect takes place causing the entire system failure. In summary, there exists competition between the failure isolation and failure propagation effects. Existing works addressing the above described competing failures focus only on single-phase systems. In this work, we propose a combinatorial algorithm for the reliability analysis of non-repairable PMS subject to the competing failures. The proposed approach is applicable to different types of time-to-failure distributions for the system components. A case study is given to demonstrate application and advantages of the proposed method.
受竞争失效影响的分阶段任务系统的可靠性
研究了相控任务系统在竞争失效传播和失效隔离效应下的可靠性分析问题。由系统组件引起的具有全局效应的传播性故障(PFGE)是指除了该组件本身之外,还会对所有其他系统组件造成损害的故障。然而,在功能依赖(FDEP)行为的系统中,触发组件的故障会使系统对依赖组件产生的PFGE不敏感,即故障隔离效应。另一方面,如果当依赖组件的PFGE发生时,触发组件仍在工作,则会发生故障传播效应,导致整个系统故障。综上所述,失效隔离效应与失效传播效应之间存在竞争关系。解决上述竞争性故障的现有工作仅集中在单相系统上。在这项工作中,我们提出了一种组合算法来分析不可修复的PMS在竞争故障下的可靠性。所提出的方法适用于系统组件的不同类型的失效时间分布。最后通过实例说明了该方法的应用和优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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