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A multi-objective stochastic model for a reverse logistics supply chain design with environmental considerations

机译:具有环境考虑因素的反向物流供应链设计的多目标随机模型

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摘要

Some electronic devices have a short lifetime, and variety-seeking and consumerism are increasingly growing in today's societies. Moreover, electronic wastes contain precious substances such as gold, silver, copper, and aluminum. The proper disposal and processing of them by recycling offer considerable advantages to the environment, given the hazardous natures of such devices' substances. The proposed reverse logistics with waste electrical and electronic equipment (WEEE) is an important task considered by researchers, the use of which offers economic benefits and reduces the environmental impacts of wastes. The present study models the electrical and electronic equipment (EEE) reverse logistics process as a bi-objective mixed-integer programming model under uncertainties. The mathematical model investigates two objectives: an economic objective and an environmental objective. The first is minimizing cost, while the second is maximizing the environmental score by reverse logistics processes in recovering and recycling. The parameters of demand and WEEE return rate which is obtained from the customer were considered as two uncertain parameters. A scenario-based stochastic programming (SSP) approach is applied to deal with the uncertainties. A case study of an electronic equipment manufacturer in Esfahan, Iran was included. The model was solved by a nominal approach and an SSP approach via the epsilon-constraint (EC) and augmented epsilon-constraint (AEC) methods to obtain optimal Pareto solutions and compare the methods. Finally, the optimal results of the two approaches were evaluated. The results indicated that the SSP approach using the AEC method had better outcomes.
机译:一些电子设备有短暂的寿命,在当今的社会中寻求品种寻求和消费主义越来越多地增长。此外,电子废物含有金,银,铜和铝等贵重物质。考虑到这种装置的物质的危险性质,通过回收利用对环境提供相当大的优势的正确处置和加工。拟议的逆向物流用废物电气和电子设备(WEEE)是研究人员考虑的重要任务,使用它提供了经济效益并降低了废物的环境影响。本研究在不确定因素下模拟了电气和电子设备(EEE)反向物流过程作为双目标混合整数编程模型。数学模型调查了两个目标:经济目标和环境目标。首先是最小化成本,而第二种是通过恢复和回收的反向物流过程最大化环境得分。从客户获得的需求和WEEE回程率的参数被认为是两个不确定的参数。基于场景的随机编程(SSP)方法应用于处理不确定性。包括伊朗伊斯法罕的电子设备制造商的案例研究。该模型通过标称方法和SSP方法通过ε-约束(EC)和增强ε-约束(AEC)方法来获得最佳Pareto溶液并比较方法。最后,评估了两种方法的最佳结果。结果表明,使用AEC方法的SSP方法具有更好的结果。

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