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Multi-stage stochastic optimization of the design and planning of a Closed-Loop Supply Chain

机译:闭环供应链设计与规划的多阶段随机优化

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This paper addresses the multi-period, multi-product Closed-Loop Supply Chain (CLSC) design and planning problem with uncertain levels in the amount of raw material and customer demands. In addition, several aspects of practical significance are taken into account, such as those related with the operational and environmental costs of different transportation modes, as well as capacity limits on production, distribution and storage. The considered SC is structured as a 10-layer network (5 forward plus 5 reverse). It is important to note that the structure incorporates most of the network nodes plausible in practice. The consideration of the multi-period setting leads to a multi-stage stochastic programming problem, which is handled by a mathematical model based on a multi-stage stochastic mixed-integer linear programming formulation. The objective is to minimize the total cost of facilities, including operational, purchasing, storage, transportation and emissions costs, while guaranteeing costumers demands and maximizing the amount of products returned from repairing and decomposition centers. Thus, the performance measure seeks to obtain low-cost solutions subjected to environmental concerns.
机译:本文解决了原材料数量和客户需求水平不确定的多周期,多产品闭环供应链(CLSC)设计和计划问题。此外,还考虑了一些具有实际意义的方面,例如与不同运输方式的运营和环境成本以及生产,分配和存储的容量限制有关的方面。所考虑的SC构成为10层网络(5个正向加5个反向)。重要的是要注意,该结构包含了实际上可行的大多数网络节点。多周期设置的考虑导致了多阶段随机规划问题,该问题由基于多阶段随机混合整数线性规划公式的数学模型处理。目的是最大程度地减少设施的总成本,包括运营,采购,存储,运输和排放成本,同时保证客户的需求并最大程度地提高维修和分解中心退回的产品数量。因此,该性能度量试图获得受到环境关注的低成本解决方案。

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