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An Inventory Optimization Model Under Demand Uncertainty for Autonomous Multi-site Inventory Planning with Material Substitutability and Transshipment

机译:自主多现场库存规划的需求不确定性的库存优化模型及其转运

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This paper addresses multi-site inventory planning of raw materials in the packaging printing industry subject to demand uncertainty. Two types of material A and B exist in this setting where material B is converted to material A and material A is used for the main production. In addition, items of type A are substitutable with similar material specifications and can be transshipped across production sites to balance the inventory level in the entire network. The practice is currently carried out purely manually in the packaging printing sites of our industrial partner. With that in mind, we develop a holistic inventory optimization model to automate optimal inventory replenishment of raw materials with substitutability and transshipment support across multiple production sites. The objective is to minimize the global expected cost with respect to stochastic material demand.
机译:本文涉及包装印刷行业原材料的多网现场库存规划,需求不确定性。在该设置中存在两种类型的材料A和B,其中材料B被转换为材料A和材料A用于主要生产。此外,A型物品是用类似的材料规格来代替,可以在生产站点上传输,以平衡整个网络中的库存水平。目前纯粹手动在工业合作伙伴的包装印刷地点手动进行。考虑到这一点,我们开发了一个整体库存优化模型,以使原材料的最佳库存补充在多个生产基地中的替代品和转运支持。目的是将全球预期成本最大限度地减少了随机材料需求。

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