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Multi-Echelon Exchangeable-Item Repair System Optimization

机译:多级可交换物品维修系统优化

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摘要

We consider a multi-item, multi-echelon exchangeable-item repair system with ample repair servers. Customers arriving to the system with failed items will receive any available item whereas the failed item will be either repaired onsite or sent to higher echelons for repair. To decrease the average waiting time of a random customer, managers can invest in multiple ways: increasing the number of spares, reducing repair times, improving repair capabilities, and reducing shipping times. We provide an efficient algorithm for a suboptimal budget allocation at each location in the system and derive an upper bound for the distance of the solution from the optimal solution. We derive the waiting time distribution of a random customer and the distribution of the number of customers in the system. Finally, we provide a numerical example that is motivated by a real-life situation to demonstrate the results and intuitions learned from the model.
机译:我们考虑具有充足维修服务器的多项目,多级可交换项目维修系统。带有故障物品到达系统的客户将收到任何可用的物品,而发生故障的物品将被现场维修或送到更高的梯队进行维修。为了减少随机客户的平均等待时间,管理人员可以通过多种方式进行投资:增加备件数量,减少维修时间,改善维修能力并减少运输时间。我们为系统中每个位置的次优预算分配提供了一种有效的算法,并从最优解中得出了解的距离上限。我们得出随机客户的等待时间分布和系统中客户数量的分布。最后,我们提供了一个数字示例,该示例受现实情况的启发,以证明从模型中学到的结果和直觉。

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