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On determining a non-periodic preventive maintenance schedule using the failure rate threshold for a repairable system

机译:使用可修复系统的故障率阈值确定非定期预防性维护计划

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Maintenance activities are regarded as a key part of the repairable deteriorating system because they maintain the equipment in good condition. In practice, many maintenance policies are used in engineering fields to reduce unexpected failures and slow down the deterioration of the system. However, in traditional maintenance policies, maintenance activities have often been assumed to be performed at the same time interval, which may result in higher operational costs and more system failures. Thus, this study presents two non-periodic preventive maintenance (PM) policies for repairable deteriorating systems, employing the failure rate of the system as a conditional variable. In the proposed PM models, the failure rate of the system was restored via the failure rate reduction factors after imperfect PM activities. Operational costs were also considered, which increased along with the operating time of the system and the frequency of PM activities to reflect the deterioration process of the system. A numerical example was provided to illustrate the proposed PM policy. The results showed that PM activities performed at a low failure rate threshold slowed down the degradation of the system and thus extended the system lifetime. Moreover, when the operational cost was considered in the proposed maintenance scheme, the system replacement was more cost-effective than frequent PM activities in the severely degraded system.
机译:维护活动被视为可修复恶化系统的关键部分,因为它们可以使设备保持良好的状态。实际上,在工程领域中使用了许多维护策略来减少意外故障并减缓系统退化。但是,在传统的维护策略中,经常假定维护活动是在相同的时间间隔执行的,这可能导致更高的运营成本和更多的系统故障。因此,本研究提出了两种针对可修复恶化系统的非定期预防性维护(PM)策略,以系统的故障率作为条件变量。在提出的PM模型中,不完善的PM活动后通过故障率降低因子恢复了系统的故障率。还考虑了运营成本,该成本随着系统的运行时间和PM活动的频率而增加,以反映系统的恶化过程。提供了一个数字示例来说明建议的PM策略。结果表明,在低故障率阈值下执行的PM活动减慢了系统的退化速度,从而延长了系统寿命。此外,当在建议的维护计划中考虑运营成本时,与严重降级的系统中频繁的PM活动相比,系统更换更具成本效益。

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