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Complete Sequence Generation Algorithm for Reliability Analysis of Dynamic Systems with Sequence-Dependent Failures

机译:具有序列相关故障的动态系统可靠性分析的完整序列生成算法

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Sequence-dependent failures can be found in many real-life fault-tolerant systems where the occurrence order of fault events is important. The priority-AND (pAND) gates have been used to model such dependent behavior in the dynamic fault tree (DFT) reliability analysis. In order to overcome limitations of existing approaches (e.g., state-space-based or simulation-based methodologies), a combinatorial and analytical method has recently been proposed, which offers an exact and efficient solution to the reliability analysis of dynamic systems with sequence-dependent failures. Using this approach, it is necessary to adopt an efficient algorithm to enumerate the list of complete sequences from partial sequences. Thus in this paper, we propose a sorting algorithm for enumerating complete sequences of events from the partial orders/sequences of the events for the reliability analysis of systems subject to sequence-dependent failure behavior. The generation algorithm is based on the topological sorting algorithm which finds the optimal sequence that satisfies the precedence constraints in a directed acyclic graph. Several examples are given to illustrate the basics and application of the proposed approach.
机译:依赖序列的故障可以在许多实际的容错系统中找到,在这些系统中,故障事件的发生顺序很重要。在动态故障树(DFT)可靠性分析中,优先级AND(pAND)门已用于对此类相关行为进行建模。为了克服现有方法(例如基于状态空间或基于模拟的方法)的局限性,最近提出了一种组合和分析方法,该方法为具有序列的动态系统的可靠性分析提供了一种精确而有效的解决方案。相关故障。使用这种方法,有必要采用一种有效的算法来从部分序列中枚举完整序列的列表。因此,在本文中,我们提出了一种排序算法,用于从事件的部分顺序/事件序列中枚举事件的完整序列,以进行受序列依赖的故障行为的系统的可靠性分析。生成算法基于拓扑排序算法,该算法在有向无环图中找到满足优先约束的最佳序列。给出了几个例子来说明所提出方法的基础和应用。

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