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Optimal nonperiodic inspection scheme for a multicomponent repairable system with failure interaction using A~* search algorithm

机译:具有A〜*搜索算法的具有故障交互作用的多部件可修复系统的最佳非周期性检查方案

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This paper proposes an approach for finding optimal nonperiodic inspection scheme for a multicomponent repairable system with failure interaction. Failure of one component of the system is hard, i.e., as soon as it occurs, the system stops operating. Failures of the other components are soft, namely, they do not cause the system stop, but increase the system operating costs. Soft failures are detected only if inspection is performed. Thus, the components with soft failure are all inspected at the scheduled inspection instances and are minimally repaired if found failed. When the component with hard failure fails, it is also repaired. However, its failure increases the failure rate of the other components. The system's expected total cost associated to a given inspection scheme includes inspection costs, repair costs, and the penalty costs that are incurred due to the time delay between real occurrence of the soft failures and their detection at inspections. The objective is to determine the optimal inspection scheme that yields minimum expected total cost. In the proposed approach, the expected total cost is formulated in terms of inspection scheme. Then, A~* search algorithm, with a proposed heuristic cost function, for calculating lower bounds, is employed to search through alternative inspection schemes to determine the optimal one. The proposed approach is illustrated through a simplified numerical example.
机译:本文提出了一种寻找具有故障相互作用的多部件可修复系统的最佳非周期性检查方案的方法。系统的一个组件很难发生故障,即,一旦发生故障,系统就会停止运行。其他组件的故障很小,即不会导致系统停止,但会增加系统的运行成本。仅在执行检查时才能检测到软故障。因此,所有具有软故障的组件都将在计划的检查实例中进行检查,如果发现故障,则将进行最少的维修。当具有硬故障的组件发生故障时,也会对其进行修复。但是,其故障会增加其他组件的故障率。与给定检查方案相关的系统预期总成本包括检查成本,维修成本以及由于实际发生软故障与在检测中发现软故障之间的时间延迟而产生的罚款成本。目的是确定产生最低预期总成本的最佳检查方案。在提议的方法中,预期总成本是根据检查计划制定的。然后,使用具有提议的启发式成本函数的A〜*搜索算法来计算下界,以搜索替代检查方案以确定最佳方案。通过简化的数值示例说明了所提出的方法。

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