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Condition-based maintenance policies under imperfect maintenance at scheduled and unscheduled opportunities

机译:基于条件的维护策略,在预定和未完全的机会上维护

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摘要

Motivated by the cost savings that can be obtained by sharing resources in a network context, we consider a stylized, yet representative, model for the coordination of maintenance and service logistics for a geographic network of assets. Capital assets, such as wind turbines in a wind park, require maintenance throughout their long lifetimes. Two types of preventive maintenance are considered: planned maintenance at periodic, scheduled opportunities, and opportunistic maintenance at unscheduled opportunities. The latter type of maintenance arises due to the network context: When an asset in the network fails, this constitutes an opportunity for preventive maintenance for the other assets in the network. So as to increase the realism of the model at hand and its applicability to various sectors, we consider the option of not-deferring and of deferring planned maintenance after the occurrence of opportunistic maintenance. We also assume that preventive maintenance may not always restore the condition of the system to 'as good as new.' By formulating this problem as a semi-Markov decision process, we characterize the optimal policy as a control limit policy (depending on the remaining time until the next planned maintenance) that indicates on the one hand when it is optimal to perform preventive maintenance and on the other hand when maintenance resources should be shared if an opportunity in the network arises. In order to facilitate managerial insights on the effect of each parameter on the cost, we provide a closed-form expression for the long-run rate of cost for any given control limit policy (depending on the remaining time until the next planned maintenance) and compare the costs (under the optimal policy) to those of suboptimal policies that neglect the opportunity for resource sharing. We illustrate our findings using data from the wind energy industry.
机译:通过在网络上下文中共享资源可以获得的成本节省的推动,我们考虑了一个风格化,但代表性的型号,用于协调维护和服务物流资产的地理网络。风电场中的风力涡轮机等资本资产需要在他们的寿命期间维护。考虑两种类型的预防性维护:在定期,预定的机会和机会维护下计划维护,并在不定期的机会上进行机会维护。由于网络上下文而产生后一类维护:当网络中的资产失败时,这将构成预防网络中其他资产的机会。因此,为了增加手头的模型的现实主义及其对各个部门的适用性,我们考虑在机会维护发生后不推迟和推迟计划维护的选择。我们还假设预防性维护可能并不总是将系统的状况恢复为“与新的一样好”。通过将此问题作为半马尔可夫决策过程,我们将最佳策略表征为控制限制策略(根据剩余时间,直到下一个计划的维护),当它最佳地执行预防性维护时,一方面指示一方面另一方面,如果在网络中的机会出现,则应共享维护资源。为了促进管理每个参数对成本的影响的管理见解,我们为任何给定的控制限制政策的长期成本提供了封闭式表达(取决于剩余时间直到下一个计划的维护)和将成本(根据最佳政策)与疏忽资源共享机会的次优政策的成本(在最佳政策下)。我们用来自风能行业的数据说明了我们的研究结果。

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