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Optimal acquisition policy in remanufacturing systems with quantity discount and carbon tax scheme

机译:具有数量折扣和碳税计划的再制造系统中的最优采购策略

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High uncertainty and variability of acquirable cores can lead to some difficulties of operations management in the remanufacturing process. Two acquisition models with quantity discount and carbon tax scheme were established to analyze the effect of quality variability and condition uncertainty and to reduce these difficulties. In the first model, quality variability was considered. The optimal acquisition policy was determined by a single closed-form expression because the average cost of remanufactured products is independent of the acquisition quantity for a given discount segment. In the second model, both quality variability and condition uncertainty were considered. The properties of the model were analyzed, and a single algorithm was developed to obtain the optimal acquisition policy based on the bisection method. Finally, numerical simulation examples were provided to explore the effect of quantity discount on the optimal acquisition policy. Results show that the quantity discount schedule impels remanufacturers to acquire more cores and enhances the chances of remanufacturers to select the best cores. Moreover, the total expected cost decreases, especially in the case with both quality variability and condition uncertainty. The proposed model can effectively solve the acquisition problem in remanufacturing systems.
机译:可获得的磁芯的高度不确定性和可变性会导致在再制造过程中运营管理的一些困难。建立了具有数量折扣和碳税计划的两种购置模型,以分析质量变异性和条件不确定性的影响并减少这些困难。在第一个模型中,考虑了质量变异性。最佳采购策略由单个封闭式表达式确定,因为再制造产品的平均成本与给定折扣段的采购数量无关。在第二个模型中,考虑了质量变异性和条件不确定性。分析了模型的性质,并基于对分法,开发了一种单一算法来获取最优采集策略。最后,通过数值算例,探讨了数量折扣对最优购置策略的影响。结果表明,数量折扣计划促使再制造商获得更多的核心,并增加了再制造商选择最佳核心的机会。而且,总的预期成本降低了,特别是在质量变化和条件不确定的情况下。该模型可以有效地解决再制造系统中的采购问题。

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