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Integrating the Number and Location of Retail Outlets on a Line with Replenishment Decisions

机译:将在线零售点的数量和位置与补货决策相结合

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affect different planning horizons—namely, the strategic and operational ones—and simultaneously derive the optimal values of these decisions. The system we investigate comprises retail outlets and customers in an infinite-horizon setting. Both retail outlets and customers are located on a finite homogenous line segment. The total demand posed by customers is normally distributed with known mean and variance. To optimally design and operate such a system, we need to determine the optimal values of the number of retail outlets, the location of each retail outlet, and the replenishment inventory levels maintained at each retail outlet. We analyze the system from an expected cost point of view, considering the fixed costs of operating the retail outlets, the expected holding and shortage costs, and the expected delivery costs. We show that all decisions can be represented as a function of the number of retail outlets. Moreover, we show that the system's expected cost function is quasi-convex in the number of retail outlets. We compare our model to a model that does not integrate these decisions at once. We show the advantage of our approach on both the solution and objective spaces. We propose an exact quantification of this advantage in terms of the cost and problem parameters. In addition, we point out several managerial insights.
机译:影响不同的计划范围(即战略和运营范围),并同时得出这些决策的最佳价值。我们调查的系统由无限制水平的零售点和客户组成。零售点和客户都位于有限的同质线段上。客户提出的总需求通常以已知的均值和方差分布。为了优化设计和运行这样的系统,我们需要确定零售点数量,每个零售点的位置以及每个零售点保持的补货库存水平的最佳值。我们从预期成本的角度分析系统,并考虑到经营零售店的固定成本,预期的持有和短缺成本以及预期的交付成本。我们表明,所有决策都可以表示为零售店数量的函数。此外,我们证明了该系统的预期成本函数在零售点数量上是准凸的。我们将模型与不会立即整合这些决策的模型进行比较。我们展示了我们的方法在解决方案和目标空间上的优势。我们建议根据成本和问题参数对此优势进行精确量化。此外,我们指出了一些管理方面的见解。

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