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Robust environmental closed-loop supply chain design under uncertainty

机译:不确定性下的稳健环境闭环供应链设计

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摘要

With the fast developments in product remanufacturing to improve economic and environmental performance, an environmental closed-loop supply (ECLSC) chain is important for enterprises' competitiveness. In this paper, a robust ECLSC network is investigated which includes multiple plants, collection centers, demand zones', and products, and consists of both forward and reverse supply chains. First, a robust multi-objective mixed integer nonlinear programming model is proposed to deal with ECLSC considering two conflicting objectives simultaneously, as well as the uncertain nature of the supply chain. Cost parameters of the supply chain and demand fluctuations are subject to uncertainty. The first objective function aims to minimize the economical cost and the second objective function is to minimize the environmental influence. Then, the proposed model is solved as a single-objective mixed integer programming model applying the LP-metrics method. Finally, numerical example has been presented to test the model. The results indicate that the proposed model is applicable in practice. (C) 2015 Elsevier Ltd. All rights reserved.
机译:随着产品再制造的快速发展以改善经济和环境绩效,环境闭环供应链(ECLSC)对于企业竞争力至关重要。在本文中,研究了一个健壮的ECLSC网络,该网络包括多个工厂,收集中心,需求区和产品,并且由正向和反向供应链组成。首先,提出了一个鲁棒的多目标混合整数非线性规划模型来处理ECLSC,该模型同时考虑了两个相互冲突的目标以及供应链的不确定性。供应链的成本参数和需求波动都存在不确定性。第一个目标函数旨在最小化经济成本,第二个目标函数旨在最小化环境影响。然后,将所提出的模型作为采用LP度量方法的单目标混合整数规划模型进行求解。最后,通过数值例子对模型进行了测试。结果表明,所提出的模型是可行的。 (C)2015 Elsevier Ltd.保留所有权利。

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