具有正向和逆向流动的供应链问题多目标模糊数学模型

Irem Otay, F. Çebi
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引用次数: 3

摘要

逆向物流一直是研究人员和实践者关注的一个复杂而热门的话题。产品回收在降低成本和保护环境方面对公司有很多好处。在本研究中,分析了其中一种回收方案,即再利用。为了实现这一目标,通过考虑产品的正向和逆向流动,建立了一个数学模型来计划可重复使用产品和新产品的生产和分配。该模型是由多个客户、多个分销商、多个转运点和一个工厂组成的多级供应链模型。由于逆向物流存在模糊性、模糊性和信息缺失等问题,在模糊环境下构建和解决逆向物流问题。该模型基于一个工业案例,在一个假设的供应链网络上实现,并与其他方法的结果进行了比较。
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A multiobjective fuzzy mathematical model for a supply chain problem with the forward and reverse flows
Reverse logistics has been one of the complex and popular topics drawing attentions of the researchers and practitioners. Recovery of products has many advantages to companies in reducing costs and protecting the environment. In this study, one of the recovery options, namely reuse, is analysed. For this pursuit, a mathematical model is developed to plan production and distribution of the reusable products as well as the new products by considering the forward and reverse flows of the products. The model is a multi-echelon supply chain model composed of multiple customers, multiple distributors, multiple transshipment points, and a factory. Due to vagueness, ambiguity and lack of information in the reverse logistics, the problem is constructed and solved under the fuzzy environment. The model is implemented on a hypothetical supply chain network based on an industrial case, and the results of the model are compared with the results of the other methods.
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