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Rapid-Charging Navigation of Electric Vehicles Based on Real-Time Power Systems and Traffic Data

机译:基于实时电力系统和交通数据的电动汽车快速充电导航

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Electric vehicles (EVs) have attracted growing attention in recent years. However, daily charging of EVs, in particular rapid charging, may impact power systems, especially during peak hours, and the effects may occur in different places as traffic conditions change. To address these issues, we describe an integrated rapid-charging navigation strategy that considers both the traffic conditions and the status of the power grid. The system is based on an intelligent transport system (ITS), and contains four modules: a power system control center (PSCC), an ITS center, charging stations, and EV terminals. The PSCC calculates the available charging capacity and station charging capacity based on power grid data and transmits the results to the charging stations. The charging stations determine their charging plans and estimate the available charging power for future EVs (CPFE), and transmit these data to the ITS center. After receiving CPFE data and traffic data from the ITS center, the EV terminal estimates the total time for charging (TTC) for different stations, which includes the driving time, waiting time, and charging time. The driver can view these results and choose to be navigated to the charging station corresponding to the minimum TTC. The modular design of the navigation system reduces data transmission, which protects the drivers' privacy since they can choose which charging station to use and are not required to send any data to the ITS system. Simulation results demonstrate the feasibility of the proposed method for different working conditions for power system and traffic conditions.
机译:近年来,电动汽车(EV)引起了越来越多的关注。但是,电动汽车的每日充电(尤其是快速充电)可能会影响电力系统,尤其是在高峰时段,并且随着交通状况的变化,其影响可能会发生在不同的地方。为了解决这些问题,我们描述了一种综合的快速充电导航策略,该策略同时考虑了交通状况和电网状态​​。该系统基于智能运输系统(ITS),并包含四个模块:电力系统控制中心(PSCC),ITS中心,充电站和EV终端。 PSCC根据电网数据计算可用的充电容量和充电站充电容量,并将结果传输到充电站。充电站确定其充电计划并估算未来电动汽车(CPFE)的可用充电功率,并将这些数据传输到ITS中心。 EV终端从ITS中心接收CPFE数据和交通数据后,将估算不同站点的总充电时间(TTC),其中包括行驶时间,等待时间和充电时间。驾驶员可以查看这些结果,并选择导航到与最小TTC对应的充电站。导航系统的模块化设计减少了数据传输,从而保护了驾驶员的隐私,因为他们可以选择要使用的充电站,并且不需要向ITS系统发送任何数据。仿真结果证明了该方法在电力系统和交通状况不同工况下的可行性。

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