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Electric bus scheduling under single depot dynamic wireless charging infrastructure planning

机译:单车辆动态无线充电基础设施规划的电动公交车调度

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The use of electric bus fleets has become a topical issue in recent years. This paper aims to analyze strategic bus fleet scheduling and dynamic wireless charging (DWC) planning problems based on data obtained from the transportation center at Binghamton University. More precisely, we have developed a mixed-integer mathematical model to simultaneously select the optimal location of the DWC facilities and find the optimal battery sizes of electric buses (EBs) for the system. This DWC planning model allows all the system's EBs to travel the common routes (depot-base station-depot) safely despite their different optimal battery sizes. Additionally, we have developed a scheduling model to find the optimal number of EBs by considering the additional charging time and battery size restrictions. To allow organizations to determine bus replacement plans that will meet their fleet electrification targets in a cost-effective way, we have introduced joint and disjoint scheduling planning strategies for the current conventional bus fleet and a potential EB fleet. Further, we have reformulated the DWC model so an EB can serve several routes with uniform battery size. The results show that the joint scheduling with one optimal battery size is more cost-effective than disjoint scheduling with route-specific battery sizes.
机译:近年来,电动公交车队的使用已成为一个局部问题。本文旨在分析战略总线舰队调度和动态无线充电(DWC)规划问题,基于Binghamton University的交通中心获得的数据。更确切地说,我们开发了一个混合整数的数学模型,同时选择DWC设施的最佳位置,并找到系统的电动总线(EBS)的最佳电池尺寸。尽管有不同的最佳电池尺寸,但该DWC规划模型允许所有系统的EBS安全地行进公共路线(Depot-Base Station-Depot)。此外,我们通过考虑额外的充电时间和电池大小限制,开发了一个调度模型来查找最佳EBS的最佳数量。为了允许组织确定将以经济高效的方式满足其舰队电气化目标的总线更换计划,我们已经引入了当前传统总线船队和潜在的EB舰队的联合和不相交的调度规划策略。此外,我们已经重新制定了DWC型号,因此EB可以提供多个电池尺寸的路线。结果表明,具有一个最佳电池尺寸的关节调度比使用路由特定电池尺寸的脱节调度更具成本效益。

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