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Setting Safety Stocks In Multi-stage Inventory Systems Under Rolling Horizon Mathematical Programming Models

机译:滚动视域数学编程模型下的多阶段库存系统安全库存设定

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This paper considers the problem of determining safety stocks in multi-item multi-stage inventory systems that face demand uncertainties. Safety stocks are necessary to make the supply chain, which is driven by forecasts of customer orders, responsive to (demand) uncertainties and to achieve predefined target service levels. Although there exists a large body of literature on determining safety stock levels, this literature does not provide an effective methodology that can address complex multi-constrained supply chains. In this paper, the problem of determining safety stocks is addressed by a simulation based approach, where the simulation studies are based on solving the supply chain planning problem (formulated as a mathematical programming model) in a rolling horizon setting. To demonstrate the utility of the proposed approach, an application of the approach at Organon, a worldwide operating biopharmaceutical company, will be discussed.
机译:本文考虑了在面临需求不确定性的多项目多阶段库存系统中确定安全库存的问题。安全库存对于建立供应链是必要的,该供应链受客户订单的预测驱动,响应(需求)不确定性并达到预定的目标服务水平。尽管存在大量有关确定安全库存水平的文献,但该文献并未提供可解决复杂的多约束供应链的有效方法。在本文中,通过基于模拟的方法来解决确定安全库存的问题,其中模拟研究基于解决滚动环境中的供应链计划问题(以数学规划模型形式表示)。为了证明该方法的实用性,将讨论该方法在全球运营的生物制药公司Organon的应用。

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