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Reverse logistics optimization of an industrial air conditioner manufacturing company for designing sustainable supply chain: a fuzzy hybrid multi-criteria decision-making approach

机译:逆向物流优化工业空调制造公司设计可持续供应链:模糊混合多标准决策方法

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Magnified resource consumption and depletion of natural resources calls for non-flexible or strict regulations and penalties on industrial operations, increased rate of processing and reuse of waste material as a substitute for raw material and political and legal interventions at global scale. Product recovery involves reuse, repair, refurbishing, remanufacturing and materials recycling, requires an efficient network design known as reverse logistic network and offers economical benefits in terms of fewer procurement of raw material, inventory management and less disposal. In current study, a mixed integer linear programming model designed on a multi-stage reverse logistics network for product recovery is proposed which considers different recovery options-product remanufacturing, component reprocessing and material recycling for sustainable outcomes. The model is designed to find optimal solutions for fulfilling demand and revenue needs by focusing on strategic locations for collection centers, reprocessing centers, remanufacturing plants and transportation options and simultaneously achieving sustainability goals. The model is applied on an Indian based manufacturing unit of a Saudi Arabian Industrial Air conditioner manufacturing organization and the case is presented here. The model is converted into a multi-objective programming model in accordance with the importance of each objective suiting the business needs. All relevant objective functions are evaluated using BWM, AHP and FAHP methods to obtain weights for integration into a fuzzy linear programming model which eventually provides three separate results. The model applied has originality and uniqueness for applications to solve multi-objective problems under uncertain environment and tends to strike a balance between economic and environmental objectives. The study provides for a base for further scope covering uncertainty about the amount and quality of returned products and even can be implemented by practitioners and academics for making a significant contribution in improving the efficiency of supply chains.
机译:自然资源的放大资源消耗和消耗对工业运营的非灵活性或严格的规定和处罚,加工加工率和废料的重用率作为全球范围的原材料和政治和法律干预措施。产品恢复涉及重用,修复,翻新,再制造和材料回收,需要称为反向物流网络的有效网络设计,并在更少的原材料采购,库存管理和较少处置方面提供经济的益处。在目前的研究中,提出了一种用于产品恢复的多级反向物流网络上设计的混合整数线性编程模型,其考虑了不同的恢复选项 - 产品再制造,组件再处理和可持续结果的回收。该模型旨在通过专注于收集中心,再处理中心,再制造植物和运输选项,同时实现可持续发展目标,找到满足需求和收入需求的最佳解决方案。该模型适用于沙特阿拉伯工业空调制造组织的印度制造单元,此处介绍。该模型根据适合业务需求的每个目标的重要性转换为多目标编程模型。使用BWM,AHP和FAHP方法进行评估所有相关的客观功能,以获得集成到模糊线性编程模型的重量,最终提供三个单独的结果。该模型应用于解决不确定环境下的多目标问题的应用程序具有原创性和唯一性,并且倾向于在经济和环境目标之间取得平衡。该研究规定了一个基础,用于进一步涵盖返回产品数量和质量的不确定性,甚至可以通过从业者和学者实施,以提高供应链效率的重大贡献。

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