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Optimal maintenance policy for multicomponent systems with periodic and opportunistic inspections and preventive replacements

机译:具有定期检查和机会检查以及预防性更换的多组件系统的最佳维护策略

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摘要

In the present paper, a system with components subject to soft and hard failures is considered. It is assumed that hard failures are revealed and fixed immediately and present an additional opportunity for inspection (opportunistic inspection), but soft failures are hidden and only corrected at periodic inspections. The objective is to find the optimal maintenance policy for all components and the optimal periodic inspection for the entire system. Two models are considered in this context. In the first model, hard-type and soft-type components are subject to minimal repair or corrective replacement, and soft-type components undergo opportunistic inspections. In the second model, in addition to the assumptions of the first model, hard-type components may be preventively replaced at periodic inspections. In our models, we base the maintenance decision for the soft-type components on the optimal number of minimal repairs until replacement, and for the hard-type components - on the optimal age before replacement. A recursive equation is provided for deriving the required expected values. Hidden failures preclude us from expressing the terms of the objective function in closed form. For this reason, the optimal periodic inspection interval for the system minimizing its total expected life cycle cost is found for both models using simulation.
机译:在本文中,考虑具有软故障和硬故障的组件的系统。假定立即发现并修复了硬故障,并提供了额外的检查机会(机会检查),但是软故障是隐藏的,只有在定期检查时才能纠正。目的是为所有组件找到最佳的维护策略,并为整个系统找到最佳的定期检查。在这种情况下考虑了两个模型。在第一个模型中,硬型和软型组件需要进行最少的维修或纠正性更换,并且软型组件需要进行机会检查。在第二个模型中,除了第一个模型的假设外,在定期检查中还可以预防性地更换硬质组件。在我们的模型中,我们针对软型部件的维护决策基于直至更换的最佳最小维修次数,而针对硬型部件的维护决策则基于更换前的最佳使用寿命。提供了一个递归方程,用于导出所需的期望值。隐藏的失败使我们无法以封闭形式表达目标函数的条件。因此,对于两个模型,都可以通过仿真找到使系统的总预期寿命周期成本最小的最佳定期检查间隔。

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