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A Non-Cooperative Game Based Charging Power Dispatch in Electric Vehicle Charging Station and Charging Effect Analysis

机译:基于非合作博弈的电动汽车充电站充电功率分配及充电效果分析

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Charging station powered by renewables combines both the renewables and electric vehicles, and has much possibility to be a key charging infrastructure. As the number of electric vehicles increase, recharging problem will become urgent and prominent. So satisfying more charging demand at same time is expected for charging station. In this paper, we present a charging station integrated with photovoltaic system/battery storage/grid-tied system power dispatch method for electric vehicles in an electric vehicle charging station, and this method based on the non-cooperative game achieves dynamically adjusting the charging power. The outstanding advantage is this method can provide charging service for all electric vehicles at the same time, especially in the situation where available charging power is limited. Comparing to the commonly used constant charging scheme, the simulation results showed that the proposed charging method can achieve higher charging service rate and higher utilization of charging pole inside charging station.
机译:由可再生能源提供动力的充电站将可再生能源和电动汽车结合在一起,并且很有可能成为关键的充电基础设施。随着电动汽车数量的增加,充电问题将变得迫切和突出。因此,期望充电站能够同时满足更多的充电需求。在本文中,我们提出了一种结合了电动汽车充电站中电动汽车的光伏系统/电池存储/并网系统电力调度方法的充电站,该方法基于非合作博弈实现了动态调整充电功率。该方法的突出优点是,该方法可以同时为所有电动汽车提供充电服务,特别是在可用充电功率有限的情况下。与常用的恒定充电方案比较,仿真结果表明,所提出的充电方法可以实现更高的充电服务速率和充电站内部充电极的利用率。

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