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Dynamic Charging Scheduling for Electric Vehicles Considering Real-Time Traffic Flow

机译:考虑实时交通流量的电动汽车动态充电调度

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摘要

The coupling between a power system and a traffic system concerned is strengthened by the increasing penetration of electric vehicles (EVs) as well as ever-growing employment of fast charging stations (FCSs). FCSs play an important role in linking these two systems, and their charging scheduling could have significant impacts on the security of power system operation, traffic flows and experience of EV drivers. The real-time traffic flow plays a critical role in the charging scheduling for EVs. In this paper, the driving behaviors of EVs are simulated by the microscopic traffic flow model (MTFM) with geographic distances among FCSs and EVs well taken into account, and then a bi-level dynamic charging scheduling model presented to determine the real-time charging strategy for EVs with objectives of optimally tracking the day-ahead scheduling and minimizing the waiting time cost of EVs. Finally, a coupled system including a modified 33-node distribution system and a 48-node traffic system is employed to demonstrate the essential features of the proposed method.
机译:电动汽车(EV)的普及率不断提高,以及快速充电站(FCS)的不断增长,使有关电力系统和交通系统之间的联系更加紧密。 FCS在链接这两个系统中起着重要作用,其充电调度可能会对电力系统运行的安全性,交通流量和电动汽车驾驶员的经验产生重大影响。实时交通流在电动汽车的充电计划中起着至关重要的作用。本文利用微观交通流模型(MTFM)模拟了电动汽车的驾驶行为,并充分考虑了FCS和电动汽车之间的地理距离,然后提出了一种双层动态充电调度模型来确定实时充电电动汽车的策略,其目标是优化跟踪日程安排并最大程度地减少电动汽车的等待时间成本。最后,采用包含改进的33节点分配系统和48节点交通系统的耦合系统来演示所提出方法的基本特征。

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