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首页> 外文期刊>International Journal of Information Systems and Supply Chain Management >Selection of Transportation Channels in Closed-Loop Supply Chain Using Meta-Heuristic Algorithm
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Selection of Transportation Channels in Closed-Loop Supply Chain Using Meta-Heuristic Algorithm

机译:基于元启发式算法的闭环供应链运输渠道选择

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This article presents a closed-loop supply chain (CLSC) network design problem consisting of both forward and reverse material flows. Here, a four-echelon single-product system is introduced in which multiple transportation channels are considered between the nodes of each echelon. Each design is analyzed for the optimum cost, time and environmental impact which form objective functions. The problem is modeled as a tri-objective mixed integer linear programming (MILP) model. The cost objective aggregates the opening cost (fixed cost) and the variable costs in both forward and reverses material flow. The time objective considers the longest transportation time from plants to customers and reverse. Factors of environmental impact are categorized and weighed using an analytic network process (ANP) which forms the environmental objective function. A genetic algorithm (GA) has been applied as a solution methodology to solve the MILP model. Ultimately, a case problem is also used to illustrate the model developed and concluding remarks are made regarding the results.
机译:本文提出了一个包含正向和反向物料流的闭环供应链(CLSC)网络设计问题。在此,介绍了一种四级单产品系统,其中在每个级的节点之间考虑了多个运输渠道。分析每种设计的最佳成本,时间和环境影响,这些都可以构成目标功能。该问题被建模为三目标混合整数线性规划(MILP)模型。成本目标汇总了开工成本(固定成本)和正向和反向物料流中的可变成本。时间目标考虑了从工厂到客户和相反的最长运输时间。使用形成环境目标函数的分析网络过程(ANP)对环境影响因素进行分类和权衡。遗传算法(GA)已被用作解决方法来解决MILP模型。最终,案例问题也被用来说明所开发的模型,并对结果进行总结。

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