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Enforcing service-level constraints in supply chains with assembly operations

机译:通过组装操作加强供应链中的服务级别约束

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In this paper we study a feedforward supply network that involves assembly operations. Demand is met from the most downstream stage and all stages operate subject to capacity constraints. We analyze a base-stock production policy where each stage has knowledge of its local inventory and of the inventory level of all its downstream stages. We compute optimal stock levels which minimize inventory costs and maintain stockout probabilities below given desirable levels (service-level constraints). Our approach consists of developing large deviations approximations for inventory costs and service level constraints and formulating the stock level selection problem as a nonlinear programming problem which can be solved using standard techniques. It results in huge computational savings when compared to exhaustive search using simulation. Our distributional assumptions are general enough to include temporal dependencies in the demand and production processes. We claim that such distributional information is critical in making inventory control decisions.
机译:在本文中,我们研究了涉及装配操作的前馈供应网络。从最下游阶段就可以满足需求,并且所有阶段的运行都受到容量限制。我们分析基本库存生产策略,其中每个阶段都知道其本地库存以及所有下游阶段的库存水平。我们计算最佳库存水平,以使库存成本最小化,并将缺货概率保持在给定的期望水平(服务水平约束)以下。我们的方法包括针对库存成本和服务水平约束开发大的偏差近似值,并将库存水平选择问题表述为可以使用标准技术解决的非线性规划问题。与使用模拟进行详尽搜索相比,可节省大量计算量。我们的分布假设足够笼统,可以将需求和生产过程中的时间依赖性包括在内。我们声称,这种分销信息对于制定库存控制决策至关重要。

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