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首页> 外文期刊>European Journal of Operational Research >Preventive replacement for systems with condition monitoring and additional manual inspections
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Preventive replacement for systems with condition monitoring and additional manual inspections

机译:通过状态监视和其他手动检查来预防性替换系统

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Condition monitoring (CM) and manual inspection are increasingly used in industry to identify a system's state so that necessary preventive maintenance (PM) decisions can be made. In this paper, we present a model that considers a single-unit system subject to both CM and additional manual inspections. There are two preset control limits: an inspection threshold and a preventive replacement (PR) threshold. When a CM measurement is equal to or greater than the inspection threshold but is less than the PR threshold, a manual inspection activity is initiated. When a CM measurement is greater than the PR threshold, a PR activity should be carried out. The system's degradation process evolves according to a two-stage failure process: the normal working stage, which is from new to the initial point that a defect occurs, with the CM measurement coming from a stochastic process; and the delay-time stage, which is from the initial point that a defect occurs until the point of failure, with the CM measurement coming from an increasing stochastic process. We assume that a manual inspection is perfect in that it can always identify which of these two stages the system is in. In our study, the decision variables are the CM interval and the inspection threshold, and we aim to minimize the expected cost per unit time. We provide a numerical example to demonstrate the applicability and solution procedure of the model. (C) 2015 Elsevier B.V. and Association of European Operational Research Societies (EURO) within the International Federation of Operational Research Societies (IFORS). All rights reserved.
机译:状态监视(CM)和手动检查在工业中越来越多地用于识别系统状态,以便可以做出必要的预防性维护(PM)决策。在本文中,我们提出了一个模型,该模型考虑了受CM和其他手动检查约束的单一单元系统。预设的控制限制有两个:检查阈值和预防性更换(PR)阈值。当CM测量值等于或大于检查阈值但小于PR阈值时,将启动手动检查活动。当CM测量值大于PR阈值时,应进行PR活动。系统的退化过程根据两阶段的故障过程而演变:正常工作阶段,从新到出现故障的初始点,CM测量来自随机过程;延迟时间阶段是从出现缺陷的初始点一直到故障点,而CM的测量来自不断增加的随机过程。我们认为手动检查是完美的,因为它可以始终识别系统处于这两个阶段中的哪一个。在我们的研究中,决策变量是CM间隔和检查阈值,我们的目标是使每单位的预期成本最小化时间。我们提供了一个数值示例来说明该模型的适用性和求解过程。 (C)2015年Elsevier B.V.和国际运营研究学会联合会(IFORS)中的欧洲运营研究学会协会(EURO)。版权所有。

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