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A Decomposition Approach for a Class of Capacitated Serial Systems

机译:一类电容串行系统的分解方法

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We study a class of two-echelon serial systems with identical ordering/production capacities or limits for both echelons. Demands are assumed to be integer valued. For the case where the lead time to the upstream echelon is one period, the optimality of state-dependent modified echelon base-stock policies is proved using a decomposition approach. For the case where the upstream lead time is two periods, we introduce a new class of policies called "two-tier base-stock policies," and prove their optimality. Some insight about the inventory control problem in N echelon serial systems with identical capacities at all stages and arbitrary lead times everywhere is also provided. We argue that a generalization of two-tier base-stock policies, which we call "multitier base-stock policies," are optimal for these systems; we also provide a bound on the number of parameters required to specify the optimal policy. [PUBLICATION ABSTRACT]
机译:我们研究了一类两级串行系统,它们具有相同的订购/生产能力或两个级的限制。需求被假定为整数。对于到上游梯队的提前期为一个周期的情况,使用分解方法证明了状态相关的梯队基础库存策略的最优性。对于上游提前期为两个周期的情况,我们引入了一种称为“两层基本库存策略”的新策略,并证明了它们的最优性。还提供了有关N梯形串行系统中库存控制问题的一些见解,该系统各个阶段的容量相同,并且各地交货时间任意。我们认为,将两层基本库存策略(我们称为“多层基本库存策略”)的推广对于这些系统是最佳的。我们还提供了指定最佳策略所需的参数数量的界限。 [出版物摘要]

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