Comprehensive cost oriented predictive maintenance based on mission reliability for a manufacturing system

C. Gu, Yihai He, Xiao Han, M. Xie
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引用次数: 8

Abstract

In this paper, a comprehensive cost oriented dynamic predictive maintenance policy based on mission reliability state is developed for a multi-state single-machine manufacturing system. In view of the inherent polymorphism of manufacturing systems (i.e., dynamic production scheduling and performance degradation), the connotation of mission reliability of equipment is defined and modeled based on the processing capacity distribution which integrates multiple fault data. Further, the relationship between mission reliability and performance of equipment is established by using the unavailability as the intermediary. The optimal predictive maintenance policy, the best mission reliability threshold for performing predictive maintenance action, is obtained by minimizing the comprehensive cost which includes processing capacity loss, corrective maintenance cost, predictive maintenance cost and indirect loss caused by failing to meet due dates over the planning period. This paper will also evaluate a manufacturing system of the cylinder head of an automotive engine as a case study to illustrate the effectiveness and advantages of the proposed method. The final result shows that a more significant economic benefit can be achieved by the proposed approach, which considers the mission reliability and comprehensive cost relative to the periodic preventive maintenance policy.
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基于任务可靠性的制造系统综合成本预测维护
针对多状态单机制造系统,提出了一种基于任务可靠性状态的综合成本动态预测维修策略。针对制造系统固有的多态性(即动态生产调度和性能退化),基于集成多故障数据的处理能力分布,定义了设备任务可靠性的内涵,并对其进行建模。进一步,以不可用性为中介,建立了任务可靠性与装备性能之间的关系。通过使处理能力损失、纠正性维护成本、预测性维护成本和计划期未按期造成的间接损失等综合成本最小化,得到最优的预测性维护策略,即执行预测性维护动作的最佳任务可靠性阈值。本文还将评估汽车发动机缸盖的制造系统作为一个案例研究,以说明所提出的方法的有效性和优点。结果表明,与定期预防性维修策略相比,该方法兼顾了任务可靠性和综合成本,可获得更显著的经济效益。
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