Condition-based Maintenance for a Wiener Deterioration Process under Consideration of Heterogeneity in Spare Unit Population

Mizuki Kasuya, Jin Lu
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Abstract

This research focused on a single-unit system thatdeteriorates in accordance with a Wiener process. The deterioration state iscompletely observed by sensors at equally spaced time intervals. The decision-makermust select one of three actions: do nothing, preventive replacement or correctivereplacement. Most of the recent research on condition-based maintenance (CBM)was based on the assumption that the deterioration process is the same in thetarget unit population. However, the spare units for replacement maydeteriorate at different rates due to population heterogeneity, which isreflected in the assumption that the spare unit population consists of somesubpopulations. The deterioration process is deemed on the basis of the currenttype probability vector and deterioration state. On the basis of thispopulation heterogeneity, the optimal decision-making problem of CBM isformulated as a Markov decision process. The objective is to minimize the totalexpected discounted cost over an infinite horizon. This research proved thatthe total expected discounted cost is monotonically non-decreasing in typeprobability vector and deterioration state. It also proved that the optimalmaintenance policy is a control limit policy. A numerical example demonstratedthat the total expected discounted cost with considering populationheterogeneity is reduced more than that without considering populationheterogeneity when the spare unit population is assumed to be heterogeneous.Sensitivity analysis is conducted in the diffusion coefficient in the Wienerprocess and the spare unit population distribution.
考虑备用单元数量异质性的Wiener劣化过程状态维修
本研究的重点是按照维纳过程退化的单单元系统。劣化状态由传感器在等间隔的时间内完全观察到。决策者必须从以下三种行动中选择一种:什么都不做、预防性替代或纠正性替代。基于状态的维修(CBM)的研究大多是基于目标单位群体的退化过程相同的假设。然而,由于种群异质性,备用单元可能以不同的速率退化,这反映在备用单元种群由一些子种群组成的假设中。基于电流型概率向量和劣化状态判定劣化过程。基于这种群体异质性,将煤层气的最优决策问题表述为马尔可夫决策过程。目标是在无限范围内最小化总预期折现成本。研究证明了总期望折现成本在类型概率向量和劣化状态下是单调不递减的。证明了最优维护策略是控制极限策略。数值算例表明,在假定备用单位种群是异质的情况下,考虑种群异质性的总期望折现成本比不考虑种群异质性的总期望折现成本要低得多。对维纳过程的扩散系数和备用单元种群分布进行了敏感性分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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