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An analytical approach to determine the window fill rate in a repair shop with cannibalization

机译:确定具有同化功能的维修店的窗户填充率的分析方法

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We consider a repair shop in which each unit comprises multiple component types and cannibalization is allowed. The shop's managers have a budget for purchasing spare components and need to decide how many spares of each component type to purchase. Customers arrive to the shop with a single unit of which at least one of its components has failed and expect to be served within a tolerable waiting time. Accordingly, the shop's performance measure is the window fill rate, that is, the fraction of customers who are served within the tolerable wait. In our analysis, we develop exact formulas for the window fill rate that comprise multiple dependent Skellam random variables. We overcome the practical complexity of evaluating these formulas by using simulation to evaluate only the random elements. We discuss run-time considerations for solving the spares allocation problem and demonstrate how the optimal solution and the window fill rate depend on the tolerable wait, budget and the customer base using an illustrative numerical example. (C) 2018 Elsevier Ltd. All rights reserved.
机译:我们考虑一家修理厂,其中每个单元都包含多种组件类型,并且可以进行同类相销。车间经理有购买备用零件的预算,需要确定要购买每种零件类型的零件数。客户带着一个单元到达商店,其中至少一个单元发生故障,并希望在可忍受的等待时间内得到服务。因此,商店的绩效指标是窗口填充率,即在可容忍的等待时间内被服务的顾客比例。在我们的分析中,我们为窗口填充率开发了精确的公式,该公式包含多个相关的Skellam随机变量。通过使用模拟仅评估随机元素,我们克服了评估这些公式的实际复杂性。我们讨论了解决备件分配问题的运行时注意事项,并通过一个示例性的数值示例演示了最佳解决方案和窗口填充率如何取决于可容忍的等待时间,预算和客户群。 (C)2018 Elsevier Ltd.保留所有权利。

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