基于OBDD的不完全覆盖多状态系统可靠性评估

Yung-Ruei Chang, S. Amari, S. Kuo
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引用次数: 24

摘要

本文提出了一种基于OBDD的多状态系统可靠性分析方法,该方法具有不完全故障覆盖和组合性能要求。由于组合性能需求之间存在依赖关系,因此我们应用OBDD的多状态依赖操作(MDO)来处理多状态系统中的这些依赖关系。此外,将基于obdd的方法与条件概率方法相结合,寻找多状态不完全覆盖模型的解。使用条件概率,我们也可以将此方法应用于模块化结构。该算法的主要优点是,它所花费的计算时间相当于相同问题而不假设不完全覆盖(即完全覆盖)。该算法对于容错计算机系统等复杂系统非常重要,因为即使存在共享负载(重构)、退化和共因故障等依赖关系,它也能快速准确地获得完整的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability evaluation of multi-state systems subject to imperfect coverage using OBDD
This paper presents an efficient approach based on OBDD for the reliability analysis of a multi-state system subject to imperfect fault-coverage with combinatorial performance requirements. Since there exist dependencies between combinatorial performance requirements, we apply the multi-state dependency operation (MDO) of OBDD to deal with these dependencies in a multi-state system. In addition, this OBDD-based approach is combined with the conditional probability methods to find solutions for the multi-state imperfect coverage models. Using conditional probabilities, we can also apply this method for modular structures. The main advantage of this algorithm is that it will take computational time that is equivalent to the same problem without assuming imperfect coverage (i.e. with perfect coverage). This algorithm is very important for complex systems such as fault-tolerant computer systems, since it can obtain the complete results quickly and accurately even when there exist a number of dependencies such as shared loads (reconfiguration), degradation and common-cause failures.
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