Periodic inspection frequency and inventory policies for a k-out-of-n system

Erik T. S. Bjarnason, S. Taghipour
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引用次数: 33

Abstract

ABSTRACT We investigate the maintenance and inventory policy for a k-out-of-n system where the components' failures are hidden and follow a non-homogeneous Poisson process. Two types of inspections are performed to find failed components: planned periodic inspections and unplanned opportunistic inspections. The latter are performed at system failure times when n − k +1 components are simultaneously down. In all cases, the failed components are either minimally repaired or replaced with spare parts from the inventory. The inventory is replenished either periodically or when the system fails. The periodic orders have a random lead-time, but there is no lead-time for emergency orders, as these are placed at system failure times. The key objective is to develop a method to solve the joint maintenance and inventory problem for systems with a large number of components, long planning horizon, and large inventory. We construct a simulation model to jointly optimize the periodic inspection interval, the periodic reorder interval, and periodic and emergency order-up-to levels. Due to the large search space, it is infeasible to try all possible combinations of decision variables in a reasonable amount of time. Thus, the simulation model is integrated with a heuristic search algorithm to obtain the optimal solution.
k-out- n系统的定期检查频率和库存策略
摘要本文研究了k-out- n系统的维修和库存策略,其中组件故障是隐藏的,并且遵循非齐次泊松过程。执行两种类型的检查来发现不合格的组件:计划的定期检查和计划外的机会检查。后者在系统故障时执行,当n−k +1个组件同时关闭时。在所有情况下,故障部件要么进行最低限度的维修,要么用库存中的备件进行更换。库存定期或当系统出现故障时进行补充。定期订单的交货时间是随机的,但紧急订单没有交货时间,因为这些订单是在系统故障时交货的。关键目标是开发一种解决具有大量部件、长规划周期和大库存的系统的联合维护和库存问题的方法。我们建立了一个仿真模型来共同优化定期检查间隔、定期再订货间隔、定期和紧急订货至级。由于搜索空间很大,在合理的时间内尝试所有可能的决策变量组合是不可能的。因此,将仿真模型与启发式搜索算法相结合,以获得最优解。
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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来源期刊
IIE Transactions
IIE Transactions 工程技术-工程:工业
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4.5 months
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