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A Computationally Efficient Approach for determining Inventory Levels in Capacitated Multiechelon Production-Distribution System

机译:确定多级生产能力分配系统中库存水平的一种计算有效方法

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The system under study is a single item, two-echelon production-inventory system consisting of a capacitated production facility, a central warehouse, and M regional distribution centers that satisfy stochastic demand. Our objective is to determine a system base-stock level which minimizes the long run average system cost per period. Central to the approach are (1) an inventory allocation model and associated convex cost function designed to allocate a given amount of system inventory across locations, and (2) a characterization of the amount of available system inventory using the inventory shortfall random variable. An exact model must consider the possibility that inventories may be imbalanced in a given period. By assuming inventory imbalances cannot occur, we develop an approximation model from which we obtain a lower bound on the per period expected cost. Through an extensive simulation study, we analyze the quality of our approximation, which on average performed within 0.50% of the lower bound.
机译:所研究的系统是一个单级,两级生产-库存系统,由一个生产能力强大的生产设施,一个中央仓库和满足随机需求的M个地区分销中心组成。我们的目标是确定系统基本库存水平,以使每个周期的长期平均系统成本最小化。该方法的核心是(1)库存分配模型和相关的凸成本函数,旨在在各个位置分配给定数量的系统库存,以及(2)使用库存短缺随机变量来表征可用系统库存的数量。一个精确的模型必须考虑在给定时期内库存不平衡的可能性。通过假设不会发生库存不平衡,我们开发了一个近似模型,从中可以得出每个期间的预期成本的下限。通过广泛的仿真研究,我们分析了近似的质量,平均而言,该质量在下限的0.50%之内。

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