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Coordinated dispatching and acquisition fee decisions for a collection center in a reverse supply chain

机译:逆向供应链中收集中心的协调调度和采购费用决策

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Collection centers play an important role for sustainable development in closed-loop supply chains by managing the collection activities of end-of-life (EOL) products and presenting them back to the economy. In this study, we focus on a collection center which collects EOL products that are composed of multiple components, disassembles the collected products, checks the quality of their components and sends the reusable parts to a remanufacturer at a certain price. The collection center needs to decide when to dispatch the collected products to the remanufacturer as well as the optimal acquisition fee in order to collect the right amount of EOL products from the end users and maximize its profit. We develop a dynamic programming model to maximize the long-run average profit of the collection center per unit time and analyze the optimal dispatching and acquisition fee decisions. We analyze quantity-based and time-based dispatching heuristics, which are widely used in practice, and compare their performances with the optimal dispatching decisions. We also compare static and dynamic acquisition fee models. We finally present a sensitivity analysis in order to analyze the effects of the parameters in our model. Computational results allow us to observe important managerial insights in this system regarding the optimal decisions depending on system parameters.
机译:收集中心通过管理报废产品(EOL)的收集活动并将其展示给经济,在闭环供应链中对可持续发展发挥重要作用。在这项研究中,我们集中于一个收集中心,该中心收集由多个组件组成的EOL产品,拆解所收集的产品,检查其组件的质量,并将可重复使用的零件以一定价格发送给再制造商。收集中心需要确定何时将收集的产品发送给再制造商以及最佳的采购费用,以便从最终用户那里收集适量的EOL产品并最大程度地提高其利润。我们开发了一个动态规划模型,以最大程度地提高收集中心每单位时间的长期平均利润,并分析最佳的调度和购置费决策。我们分析了在实践中广泛使用的基于数量和基于时间的调度启发式方法,并将其性能与最佳调度决策进行了比较。我们还比较了静态和动态购置费模型。最后,我们提出了敏感性分析,以分析模型中参​​数的影响。计算结果使我们能够观察到此系统中有关取决于系统参数的最佳决策的重要管理见解。

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