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Maintenance grouping for multi-component systems with availability constraints and limited maintenance teams

机译:具有可用性约束且维护团队有限的多组件系统的维护分组

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The paper deals with a maintenance grouping approach for multi-component systems whose components are connected in series. The considered systems are required to serve a sequence of missions with limited breaks/stoppage durations while maintenance teams (repairmen) are limited and may vary over time. The optimization of the maintenance grouping decision for such multi-component systems leads to a NP-complete problem. The aim of the paper is to propose and to optimize a dynamic maintenance decision rule on a rolling horizon. The heuristic optimization scheme for the maintenance decision is developed by implementing two optimization algorithms (genetic algorithm and MULTIFIT) to find an optimal maintenance planning under both availability and limited repairmen constraints. Thanks to the proposed maintenance approach, impacts of availability constraints or/and limited maintenance teams on the maintenance planning and grouping are highlighted. In addition, the proposed grouping approach allows also updating online the maintenance planning in dynamic contexts such as the change of required availability level and/or the change of repairmen over time. A numerical example of a 20-component system is introduced to illustrate the use and the advantages of the proposed approach in the maintenance optimization framework. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文讨论了组件串联的多组件系统的维护分组方法。所考虑的系统需要以有限的中断/停机时间来执行一系列任务,而维护团队(维修人员)是有限的,并且可能随时间而变化。这种多组件系统的维护分组决策的优化导致NP完全问题。本文的目的是提出并优化滚动状态下的动态维护决策规则。通过实施两种优化算法(遗传算法和MULTIFIT)来开发用于维护决策的启发式优化方案,以在可用性和有限维修人员约束下找到最佳维护计划。由于采用了建议的维护方法,因此突出显示了可用性限制或/和有限的维护团队对维护计划和分组的影响。另外,所提出的分组方法还允许在动态环境中在线更新维护计划,例如随着时间的流逝,所需可用性水平的改变和/或维修人员的改变。介绍了一个由20个组件组成的系统的数值示例,以说明该方法在维护优化框架中的用法和优点。 (C)2015 Elsevier Ltd.保留所有权利。

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