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Sustainable supply chain network design problem: Using the integrated BWM, TOPSIS, possibilistic programming, and e-constrained methods

机译:可持续供应链网络设计问题:使用集成的BWM,TOPSIS,POSTIBILIC编程和电子约束方法

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This paper proposes a two-stage multi-objective possibilistic integer linear programming sustainable supply chain network design model, minimizing the economic, environmental goals and maximizing the social sustainability goals. The proposed model determines the openings of facilities and the amount of flow of goods across the supply chain. It introduces supplier green image factors in the design of the supply chain network. The model has considered epistemic uncertainty to model the unknown capacity, cost, and demand. The proposed study has been carried out in two stages. In the first stage, BWM (Best-Worst method) and TOPSIS are applied to evaluate the green image weights of suppliers. Further, these green weights are being used in the second phase for the supply chain network design. The study has adopted combined possibilistic programming and Epsilon (epsilon) constraint method, which was reported infrequently in the literature. Epsilon (epsilon) constraint method generates distinct Pareto-optimal solutions, which provided a large combination of the trade-off between the cost, emission, and social sustainability. The results facilitate decision-makers to take the decision in an uncertain environment.
机译:本文提出了一种两级多目标可能性整数线性规划可持续供应链网络设计模型,最大限度地减少了经济,环境目标和最大化社会可持续发展目标。拟议的模型决定了设施的开口和供应链中的商品流量。它在供应链网络设计中介绍了供应商绿色图像因素。该模型已被认为是模拟未知能力,成本和需求的认知不确定性。拟议的研究已在两个阶段进行。在第一阶段,BWM(最糟糕的方法)和TOPSIS应用于评估供应商的绿色图像权重。此外,这些绿色重量用于供应链网络设计的第二阶段。该研究采用了组合的可能性编程和ε(epsilon)约束方法,其在文献中罕见。 epsilon(epsilon)约束方法产生明显的普通最佳解决方案,该解决方案提供了成本,排放和社会可持续性之间的折衷组合。结果促进了决策者在不确定的环境中作出决定。

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