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Vehicle Routing Problem for Collaborative Multidepot Petrol Replenishment under Emergency Conditions

机译:在紧急情况下,在紧急条件下协同多派汽油补充的车辆路由问题

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摘要

In recent years, emergency events have affected urban distribution with increasing frequency. For example, the 2019 novel coronavirus has caused a considerable impact on the supply guarantee of important urban production and living materials, such as petrol and daily necessities. On this basis, this study establishes a dual-objective mixed-integer linear programming model to formulate and solve the cooperative multidepot petrol emergency distribution vehicle routing optimization problem with multicompartment vehicle sharing and time window coordination. As a method to solve the model, genetic variation of multiobjective particle swarm optimization algorithm is considered. The effectiveness of the proposed method is analyzed and verified by first using a small-scale example and then investigating a regional multidepot petrol distribution network in Chongqing, China. Cooperation between petrol depots in the distribution network, customer clustering, multicompartment vehicle sharing, time window coordination, and vehicle routing optimization under partial road blocking conditions can significantly reduce the total operation cost and shorten the total delivery time. Meanwhile, usage of distribution trucks is optimized in the distribution network, that is, usage of single- and double-compartment trucks is reduced while that of three-compartment trucks is increased. This approach provides theoretical support for relevant government departments to improve the guarantee capability of important materials in emergencies and for relevant enterprises to improve the efficiency of emergency distribution.
机译:近年来,紧急事件影响了频率越来越多的城市分布。例如,2019年新型冠状病毒对重要城市生产和生活材料的供应保障导致了相当大的影响,例如汽油和日用品。在此基础上,该研究建立了一种双目标混合整数线性编程模型,用于制定和解决与多组分车辆共享和时间窗口协调的协同多派汽油汽油紧急分配车辆路由优化问题。作为解决模型的方法,考虑了多目标粒子群优化算法的遗传变化。通过首先使用小规模示例,然后调查中国重庆的区域多派汽油分配网络,分析和验证该方法的有效性。在分销网络中的汽油仓库之间的合作,在部分道路阻断条件下,在部分道路阻断条件下的乘客聚类,多组分车辆共享,时间窗口协调和车辆路由优化可以显着降低总运营成本并缩短总递送时间。同时,分销卡车的使用在分销网络中优化,即单个和双隔室卡车的用法减少,而三厢车的增加则增加。这种方法为相关政府部门提供了理论支持,以提高紧急情况和相关企业的重要材料的保障能力,以提高应急分配效率。

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