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An Integrated Model for Production and Preventive Maintenance Planning in Multi-State Systems

机译:多状态系统中生产和预防性维护计划的集成模型

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This paper integrates preventive maintenance with tactical production planning in multi-state systems. The proposed model coordinates the production with the maintenance decisions, so that the total expected cost is minimized. We are given a set of products that must be produced in lots on a multi-state production system during a specified finite planning horizon. Planned preventive maintenance, and unplanned corrective maintenance can be performed on each component of the multi-state system. The maintenance policy suggests cyclical preventive replacements of components, and a minimal repair on failed components. The objective is to determine an integrated lot-sizing and preventive maintenance strategy of the system that will minimize the sum of preventive and corrective maintenance costs, setup costs, holding costs, backorder costs, and production costs, while satisfying the demand for all products over the entire horizon. We model the production system as a multi-state system with binary-states, and $s$-independent components. A method is proposed to evaluate the times and the costs of preventive maintenance and minimal repair, and the average production system capacity in each period. We show how the formulated problem can be solved by comparing the results of several multi-product capacitated lot-sizing problems. For large-size problems, a genetic algorithm is developed to deal with the preventive maintenance selection task in the integrated planning model.
机译:本文将预防性维护与多州系统中的战术生产计划结合在一起。提出的模型使生产与维护决策相协调,从而使总预期成本最小化。我们提供了一组必须在指定的有限计划范围内在多州生产系统上批量生产的产品。可以在多状态系统的每个组件上执行计划的预防性维护和计划外的纠正性维护。维护策略建议定期对组件进行预防性更换,并对出现故障的组件进行最少的维修。目的是确定系统的集成的批量确定和预防性维护策略,该策略将使预防性和纠正性维护成本,设置成本,持有成本,缺货成本和生产成本的总和最小化,同时满足所有产品的需求。整个视野。我们将生产系统建模为具有二进制状态和$ s $独立组件的多状态系统。提出了一种方法来评估预防性维护和最小维修的时间和成本,以及每个时期的平均生产系统容量。我们展示了如何通过比较多个多产品容量批量问题的结果来解决制定的问题。对于大型问题,开发了一种遗传算法来处理集成计划模型中的预防性维护选择任务。

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