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A numerical simulation approach for reliability analysis of fault-tolerant repairable system

机译:容错可修复系统可靠性分析的数值模拟方法

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This paper proposes a numerical simulation approach for reliability analysis of fault-tolerant system with repairable components. In the traditional method for the reliability analysis of fault-tolerant system, the system structure is described by means of binary decision diagram (BDD) and Markov Process, and then the reliability indexes are calculated. However, as the size of system augments, the size of state space will increase exponentially. In addition, Markov approach requires that the failure and repair time of the components obey exponential distribution. In this paper, by combining dynamic fault tree (DFT) and numerical simulation based on the Minimal Sequence Cut Sets (MSCS), we propose a new method to evaluate reliability of fault-tolerant system with repairable components. The approach presented does not depend on Markov model, so that it can effectively solve the problem of the state-space combination explosion. Moreover, our method does not require the system to have Markov property, and it is suitable for systems whose failure and repair time obey arbitrary distributions. Therefore, our method is more flexible than traditional method. At last, one example is given to verify the method1.
机译:本文提出了一种与维修的部件容错系统的可靠性分析的数值模拟方法。在容错系统的可靠性分析的传统方法,该系统结构由二元决策图(BDD)和马尔可夫过程,然后将可靠性指标的计算来描述。然而,随着系统增强部的大小,状态空间规模将成倍增加。此外,马氏方法要求组件的故障和维修时间服从指数分布。在本文中,结合动态故障树(DFT)以及基于最小序列割集(MSCS)的数值模拟,提出与维修的部件来评估容错系统的可靠性的新方法。提出的方法不依赖于马尔可夫模型,使之能有效地解决状态空间组合爆炸问题。此外,我们的方法不要求系统具有马尔科夫属性,很适合其故障和维修时间服从任意分布系统。因此,我们的方法比传统的方法更灵活。最后,一个例子被提供给验证该方法 1

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