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Vehicle routing problem for reverse logistics of End-of-Life Vehicles (ELVs)

机译:用于寿命终端(ELV)的逆向物流的车辆路由问题

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Reverse logistics management of End-of-Life Vehicles (ELVs) is increasingly focusing on practical solutions for getting additional value from products at the end of their life. As automotive is one of the fastest-growing sectors, the number of ELVs to be collected and recycled has been steadily increasing due to more stringent regulations. On the other hand, the operational cost (transportation) of collecting ELVs might exceed half of the purchased price. Furthermore, parameters that influence the solution of the routing problem for the collection of ELVs tend to change due to the dynamic customers' locations and variations in vehicle type and the condition of the vehicules at the end of their life. This research proposes a new reverse logistics routing problem for the collection of end-of-life vehicles. It combines the classical Vehicle Routing Problem (VRP) with the pick-up problem and additional constraints such as loading pickup sequences, time-windows, multi-trips, heterogeneous internal fleet, and external carriers. We also developed an efficient heuristic to construct routes and assign dealers to truck routes for solving large and real-size instances in a reasonable time. In collaboration with a significant player in North America for ELVs recycling, we performed a sensitivity analysis to compare the industry's current practices and the proposed method. The validation process with different instances demonstrates results consistency and provides useful managerial insights. Finally, sensitivity analysis shows potential changes in the solution performance regarding the penalty cost of unused internal fleet, the extra broker cost, the size of ELVs collected, and the number of the internal carriers' truck fleet.
机译:逆向物流管理的寿命终端(ELV)越来越关注实际解决方案,以便在其寿命结束时获得额外的产品。由于汽车是增长最快的行业之一,因此收集的ELV的数量和再循环的人数由于更严格的规定而稳步增加。另一方面,收集ELV的运营成本(运输)可能超过购买价格的一半。此外,影响到ELV的路由问题的解决方案的参数往往由于动态客户的位置和车辆类型的变化以及在其寿命结束时车辆的变化而变化。这项研究提出了一种新的逆向物流路由问题,用于集合寿命终端。它将经典的车辆路由问题(VRP)与拾取问题和附加约束相结合,例如加载拾取序列,时间窗口,多次旅行,异构内部车队和外部载波。我们还开发了一个高效的启发式,构建路线,并将经销商分配到卡车路线,以便在合理的时间内解决大型和实际情况。与北美的重要球员合作,为ELVS回收,我们进行了敏感性分析,以比较行业的现行实践和建议的方法。具有不同实例的验证过程展示了结果一致性并提供了有用的管理洞察力。最后,敏感性分析显示了解决未使用内部舰队的罚款的解决方案性能的潜在变化,额外的经纪人成本,收集的ELV大小以及内部运输车的数量。

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