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Electric Autonomous Vehicle Charging and Parking Coordination for Vehicle-to-Grid Voltage Regulation with Renewable Energy

机译:具有可再生能源的电网电压调节电动自主车辆充电和停车协调

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摘要

Power system operators face challenges of the increasing penetration level of renewable energy sources (RESs) such as out-of-limit voltage problems in distribution networks. Vehicle-to-Grid is one of the promising technologies to mitigate the voltage fluctuations by using the battery storage of electric vehicles (EVs). On the other hand, the autonomous vehicle (AV) is believed to be the next generation transport that can navigate on the road without active control of human driver. Full autonomy of AVs actuated by electric battery supports additional advantages over the ordinary EV. In this paper, we aim at coordinating the charging and parking schedule of a fleet of electric AVs to mitigate voltage variations in the power system. We formulate the charging and parking coordination problem as a mixed integer quadratic program (MIQP), which can be solved by a standard MIQP solver. Simulation on a modified 15-bus distribution system is performed and the results show that it is effective to regulate voltage by incorporating a limited number of EAVs based on our model.
机译:电力系统运营商面临着可再生能源(RESS)的普及率普及水平的挑战,例如分配网络中的限制电压问题。车辆到网格是通过使用电动车辆(EVS)的电池存储来减轻电压波动的有希望的技术之一。另一方面,自主车辆(AV)被认为是可以在没有人体驾驶员的主动控制的情况下在道路上导航的下一代传输。通过电池驱动的AVS充分自主权支持普通EV的额外优点。在本文中,我们旨在协调电动AV舰队的充电和停车时间表,以减轻电力系统的电压变化。我们制定充电和停车协调问题作为混合整数二次程序(MIQP),可以通过标准的MIQP求解器来解决。执行在改进的15母线分配系统上的仿真,结果表明,通过基于我们的模型结合有限数量的EAV来调节电压是有效的。

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