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Adaptive variable neighborhood search solution methods for the fleet size and mix pollution location-inventory-routing problem

机译:自适应变量邻域搜索解决方案方法,用于舰队尺寸和混合污染位置 - 库存路由问题

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This work introduces the Fleet-size and Mix Pollution Location-Inventory-Routing Problem with Just-inTime replenishment policy and Capacity Planning. This problem extends the strategic-level decisions of classic LIRP by considering capacity selection decisions and heterogeneous fleet composition. An MIP formulation of this new complex combinatorial optimization problem is proposed and small-sized problem instances are solved using the CPLEX solver. For the solution of more realistic-sized problem instances, a General Variable Neighborhood Search (GVNS)-based framework is adopted. Novel adaptive shaking methods are proposed as intelligent components of the developed GVNS algorithms to further improve their performance. To evaluate the proposed GVNS schemes, several problem instances are randomly generated by following specific instructions from the literature and adopting real vehicles' parameters. Comparisons between these solutions and the corresponding ones achieved by CPLEX are made. The computational results indicate the efficiency of the proposed GVNS-based algorithms, with the best GVNS scheme to produce 7% better solutions than CPLEX for small problems. Finally, the economic and environmental impacts of using either homogeneous or heterogeneous fleet of vehicles are examined. (C) 2020 Elsevier Ltd. All rights reserved.
机译:这项工作介绍了舰队规模和混合污染地点库存路由问题,只有基础补充政策和能力规划。通过考虑容量选择决策和异质舰队组成,这一问题延长了经典LIRP的战略决策。提出了这种新的复杂组合优化问题的MIP配方,并使用CPLEX求解器解决了小型问题实例。对于更现实大小的问题实例的解决方案,采用了一般变量邻域搜索(GVNS)的框架。提出了新颖的自适应摇动方法作为开发的GVNS算法的智能组件,以进一步提高其性能。为了评估所提出的GVNS方案,通过从文献中的特定指令和采用真实的车辆参数,随机生成几个问题实例。制作这些解决方案和通过CPLEX实现的相应的解决方案之间的比较。计算结果表明,基于GVNS的算法的效率,具有最佳的GVNS方案,以产生7%的解决方案,而不是CPLEX进行小问题。最后,检查了使用均匀或异质车辆车辆的经济和环境影响。 (c)2020 elestvier有限公司保留所有权利。

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