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A New Condition-Based Maintenance Decision Model for Degraded Equipment Subjected to Random Shocks

机译:一种新的基于状态的随机冲击退化设备维修决策模型

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For the condition-based maintenance decision of the degrading equipment, the existing methods usually only consider the impact of maintenance activities on equipment degradation rate or degradation level, ignoring the impact of shocks existing in the life cycle. Toward this end, this paper concentrates on how to make optimal maintenance decision policy for degraded equipment subjected to random shocks under imperfect maintenance. Firstly, we propose a multi-stage degradation model based on the Wiener process and incorporate the influence of shocks and maintenance into the degradation model. The remaining useful life(RUL) is predicted under the concept of the first hitting time (FHT). Secondly, we establish a condition-based maintenance decision model on the basis of the prognostic information and determine the monitoring interval and the preventive maintenance (PM) threshold. Finally, a numerical simulation is provided to substantiate the condition-based maintenance decision model proposed in the paper.
机译:对于降级设备的条件维护决定,现有方法通常只考虑维护活动对设备劣化率或降解水平的影响,忽略了生命周期中存在的冲击的影响。为此,本文专注于如何在不完善维护下对随机冲击进行随机冲击的退化设备进行最佳维护决策策略。首先,我们提出了一种基于维纳工艺的多阶段降级模型,并将冲击和维护的影响结合到降解模型中。在第一次打击时间(FHT)的概念下预测了剩余的使用寿命(RUL)。其次,我们基于预后信息建立一个基于条件的维护决策模型,并确定监测间隔和预防性维护(PM)阈值。最后,提供了数值模拟以证实纸张中提出的条件的维护决策模型。

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