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Fuzzy Multi-Objective Optimization of a Green Supply Chain Network with Risk Management that Includes Environmental Hazards

机译:包含环境危害的风险管理的绿色供应链网络的模糊多目标优化

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Among the leading environmental risks, global climate alteration has become one of the most important controversial issues. Greenhouse gas emissions (CO_2, methane, etc.) and air pollution have motivated a need to develop and improve environmental management strategies. As a consequence, environmental sanctions are forcing commercial enterprises to re-consider and re-design supply chain processes in a green way. This article provides a multi-objective model to design a closed-loop supply chain (CLSC) network in a green framework. Our first and second objectives are to minimize all the transportation costs for the supply chain's forward and reverse logistics; the third objective is to minimize total CO_2 emissions; the fourth objective is to encourage customers to use recyclable materials as an environmental practice. To provide more realistic modeling by treating the uncertainty in decision-makers' objectives, fuzzy modeling is used in this study. The model is explained and tested via fulfilling a numerical example. In scenario analyses, analytic hierarchy process (AHP), fuzzy AHP (F-AHP), and fuzzy TOPSIS (F-TOPSIS) approaches were applied and compared to evaluate different objectives to guide decision-makers.
机译:在主要的环境风险中,全球气候变化已成为最重要的有争议问题之一。温室气体排放(CO_2,甲烷等)和空气污染促使人们制定和改善环境管理策略。结果,环境制裁迫使商业企业以绿色方式重新考虑和重新设计供应链流程。本文提供了一个多目标模型,可以在绿色框架中设计闭环供应链(CLSC)网络。我们的第一个和第二个目标是使供应链的正向和反向物流的所有运输成本最小化;第三个目标是使总的CO_2排放量最小化;第四个目标是鼓励客户使用可回收材料作为环境实践。为了通过处理决策者目标中的不确定性提供更现实的建模,本研究使用了模糊建模。通过完成一个数值示例对模型进行了解释和测试。在场景分析中,应用了层次分析法(AHP),模糊AHP(F-AHP)和模糊TOPSIS(F-TOPSIS)方法,并进行了比较,以评估不同的目标以指导决策者。

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