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A facility location model with safety stock costs: analysis of the cost of single-sourcing requirements

机译:具有安全库存成本的设施选址模型:单源需求成本分析

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摘要

We consider a supply chain setting where multiple uncapacitated facilities serve a set of customers with a single product. The majority of literature on such problems requires assigning all of any given customer's demand to a single facility. While this single-sourcing strategy is optimal under linear (or concave) cost structures, it will often be suboptimal under the nonlinear costs that arise in the presence of safety stock costs. Our primary goal is to characterize the incremental costs that result from a single-sourcing strategy. We propose a general model that uses a cardinality constraint on the number of supply facilities that may serve a customer. The result is a complex mixed-integer nonlinear programming problem. We provide a generalized Benders decomposition algorithm for the case in which a customer's demand may be split among an arbitrary number of supply facilities. The Benders subproblem takes the form of an uncapacitated, nonlinear transportation problem, a relevant and interesting problem in its own right. We provide analysis and insight on this subproblem, which allows us to devise a hybrid algorithm based on an outer approximation of this subproblem to accelerate the generalized Benders decomposition algorithm. We also provide computational results for the general model that permit characterizing the costs that arise from a single-sourcing strategy.
机译:我们考虑一个供应链环境,其中多个无能力的设施使用单个产品为一组客户服务。有关此类问题的大多数文献都要求将所有给定客户的需求分配给单个机构。尽管这种单一采购策略在线性(或凹形)成本结构下是最佳的,但在存在安全库存成本的非线性成本下,它通常不是最优的。我们的主要目标是确定单一采购策略导致的增量成本。我们提出了一个通用模型,该模型对可为客户提供服务的供应设施数量使用基数约束。结果是一个复杂的混合整数非线性规划问题。我们提供了一种通用的Benders分解算法,用于将客户的需求分配到任意数量的供应设施中的情况。 Benders子问题的形式是无能力,非线性运输问题,它本身就是一个相关且有趣的问题。我们提供了对该子问题的分析和见解,这使我们能够基于该子问题的外部逼近来设计一种混合算法,以加速广义Benders分解算法。我们还提供了通用模型的计算结果,该结果可以表征由单一采购策略产生的成本。

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