首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part O. Journal of Risk and Reliability >Reliability analysis of static and dynamic fault-tolerant systems subject to probabilistic common-cause failures
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Reliability analysis of static and dynamic fault-tolerant systems subject to probabilistic common-cause failures

机译:静态和动态容错系统在概率性常见原因下的可靠性分析

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Fault-tolerant systems designed with redundancy techniques are typically subject to common-cause failures, which are multiple dependent component failures caused by a shared root cause or a common cause (also known as a shock). There are two types of shocks: fatal and non-fatal. A fatal shock (FS) will fail all components of a system. A non-fatal shock (NFS) will affect only a subset of system components. Most of the existing shock models have assumed that the occurrence of an NFS results in deterministic and simultaneous failures of the affected components. In practice, however, the occurrence of an NFS may result in failures of different components with different probabilities of occurrence. This behaviour is referred to as probabilistic NFS. In this paper, we consider the effects of probabilistic NFS in the reliability analysis of fault-tolerant systems. Both an explicit method and an implicit method are proposed for incorporating probabilistic NFS in the reliability analysis of static systems. A Markov approach combined with the Poisson decomposition law is proposed for incorporating probabilistic NFS in the reliability analysis of dynamic systems. The proposed approaches are illustrated through the analyses of several examples.
机译:使用冗余技术设计的容错系统通常会遇到常见原因故障,这是由共享根本原因或常见原因(也称为电击)引起的多个从属组件故障。有两种类型的电击:致命的和非致命的。致命电击(FS)将使系统的所有组件失效。非致命性电击(NFS)仅会影响系统组件的一部分。现有的大多数冲击模型都假定发生NFS会导致受影响组件的确定性和同时故障。但是,实际上,NFS的出现可能导致具有不同发生概率的不同组件发生故障。此行为称为概率NFS。在本文中,我们考虑了概率NFS在容错系统的可靠性分析中的作用。提出了将概率NFS纳入静态系统可靠性分析的显式方法和隐式方法。提出了一种将马尔可夫方法与泊松分解定律相结合的方法,将概率NFS纳入动态系统的可靠性分析中。通过对几个示例的分析来说明所提出的方法。

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