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Capacity failure rate based opportunistic maintenance modeling for series- parallel multi-station manufacturing systems

机译:串联-并联多工位制造系统基于容量故障率的机会维护模型

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In a series-parallel multi-station manufacturing system, the failure of the series station may cause the loss of the whole system capacity, while the failure of the parallel station only causes the loss of part of the system capacity. To quantitatively describe the impacts of these comprehensive failure modes on the system capacity, an evaluation index called Capacity Failure Rate (CFR) is developed based on the universal generating function. Then, a rule-based Opportunistic Maintenance (OM) policy is proposed with the CFR involved. The Preventive Maintenance (PM) opportunity occurs whenever one of the stations reaches its optimal PM interval or the CFR of the system reaches the threshold. A variable maintenance time window is developed to group the PM activities of the stations. The optimal PM scheme of the system is obtained by maximizing the maintenance efficiency of the system, defined as the availability of the system capacity driven by per unit maintenance cost, within the whole maintenance scheduling horizon. Finally, numerical examples are illustrated to show the application of the CFR and the advantage of the proposed OM policy.
机译:在串联-并联多工位制造系统中,串联工位的故障可能导致整个系统容量的损失,而并联工位的故障仅导致部分系统容量的损失。为了定量描述这些综合故障模式对系统容量的影响,基于通用生成函数,开发了一种称为容量故障率(CFR)的评估指标。然后,提出了基于CFR的基于规则的机会维护(OM)策略。每当站点之一达到其最佳PM间隔或系统的CFR达到阈值时,就会发生预防性维护(PM)机会。开发了可变的维护时间窗口以对站点的PM活动进行分组。通过最大化系统的维护效率来获得系统的最佳PM方案,维护效率定义为在整个维护计划范围内由单位维护成本驱动的系统容量的可用性。最后,通过算例说明了CFR的应用以及提出的OM策略的优势。

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