Ordering heuristics for reliability evaluation of multistate systems using multistate multivalued decision diagrams

Yaoyao Yang, J. Tao, Guanghan Bai, Yun’an Zhang
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Abstract

Many real-world engineering systems are multistate systems which are made up of the components that can work at different performance levels. It has been reported that the evaluation of multistate system reliability is an NP-hard problem. Thus, it is important to find an efficient method to analyze the reliability of such systems. In this paper, the multistate multivalued decision diagram (MMDD) method is used to evaluate the system reliability given all minimal path vectors (d-MPs for short). Because the size of the MMDD is highly affected by the order of the components, which ultimately affect the efficiency of the method. Two ordering heuristics are proposed for ordering components in d-MPs before they are used to develope the corresponding MMDD. Illustrative examples are provided, which validate the correctness and advantages of the proposed heuristics.
基于多状态多值决策图的多状态系统可靠性评估的排序启发式方法
许多现实世界的工程系统都是多状态系统,由可以在不同性能水平上工作的组件组成。已有报道称,多状态系统可靠性评估是一个np困难问题。因此,寻找一种有效的方法来分析这类系统的可靠性是很重要的。本文采用多状态多值决策图(MMDD)方法对给定所有最小路径向量(d-MPs)的系统可靠性进行评估。因为MMDD的大小很大程度上受组件顺序的影响,这最终会影响方法的效率。在开发相应的MMDD之前,提出了两种排序启发式方法对d-MPs中的组件进行排序。通过实例验证了所提启发式算法的正确性和优越性。
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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