首页> 外文期刊>Reliability, IEEE Transactions on >Multi-Level Decision-Making for The Predictive Maintenance of src='/images/tex/348.gif' alt='k'> -Out-of- src='/images/tex/388.gif' alt='n'> :F Deteriorating Systems
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Multi-Level Decision-Making for The Predictive Maintenance of src='/images/tex/348.gif' alt='k'> -Out-of- src='/images/tex/388.gif' alt='n'> :F Deteriorating Systems

机译: src =“ / images / tex / 348.gif” alt =“ k”> -Out-of- src =“ / images / tex / 388.gif” alt =“ n”> :F恶化的系统

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Traditional maintenance decisions in the framework of condition-based maintenance applied to multi-component systems are performed either at the system level or at the component level. These decisions however cannot always assure the best maintenance performance. To remedy this drawback, the present paper introduces a multi-level decision-making approach that combines maintenance decisions at the system level and the component level. The effectiveness of such an approach is investigated through an -component deteriorating system with a -out-of-:F structure, and economic dependence. In fact, based on the degradation and failure model of the considered -out-of-:F system, two new opportunistic predictive maintenance strategies with different types of maintenance decision-making are proposed. In the first one, the decisions rely only on the remaining useful lifetime of the components; while in the second one, they are based on both the remaining useful lifetimes of the system and that of its components. The maintenance cost models of these strategies are developed on the basis of semi-regenerative theory, optimized, and then compared with each other. The comparison results show that the multi-level decision-making approach allows us to more effectively avoid inopportune interventions, to better take into account the interactions among components, and hence to provide more flexible and profitable predictive maintenance strategies for multi-component systems.
机译:在应用于多组件系统的基于状态的维护框架中的传统维护决策是在系统级别或组件级别执行的。但是,这些决定不能总是确保最佳的维护性能。为了弥补这一缺陷,本白皮书介绍了一种多级决策方法,该方法将系统级别和组件级别的维护决策结合在一起。通过具有-of-of-F结构和经济依赖性的-组成恶化系统来研究这种方法的有效性。实际上,基于所考虑的F系统的退化和故障模型,提出了两种具有不同维护决策类型的新的机会性预测维护策略。在第一个中,决策仅取决于组件的剩余使用寿命。而在第二篇中,它们是基于系统及其组件的剩余使用寿命。这些策略的维护成本模型是在半再生理论的基础上开发,优化并相互比较的。比较结果表明,多级决策方法使我们能够更有效地避免不适当的干预,更好地考虑组件之间的相互作用,从而为多组件系统提供更灵活,更有利可图的预测性维护策略。

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