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A stochastic approach to size EV charging stations with support of second life battery storage systems

机译:支持二次电池存储系统的一种随机方法来确定电动汽车充电站的大小

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This paper proposes a stochastic approach to determine the number of different types of charging stations for electric vehicles (EVs) in urban parking lots: our approach minimize annual cost of energy (ACOE) while ensuring a good satisfaction level for EV users. The proposed method takes also into account a stationary energy storage system that supports the EV parking lot and consists of traction batteries no longer usable by EVs, but still performing in their so-called second life. The effectiveness of the proposed sizing method is shown by simulation results characterized by real data, gathered in the European research project CO.S.MO. By using Monte Carlo simulations, we verified the features of the electric parking lot in terms of probability that all charging stations are busy and the average waiting time to start a new charging session.
机译:本文提出了一种随机方法来确定城市停车场中电动汽车(EV)的不同类型的充电站的数量:我们的方法将年能源成本(ACOE)降至最低,同时确保电动汽车用户的良好满意度。所提出的方法还考虑了固定的能量存储系统,该系统支持EV停车场,并由电动汽车不再使用的牵引电池组成,但仍处于所谓的第二次使用中。欧洲研究项目CO.S.MO中收集的以真实数据为特征的模拟结果证明了所提出的上浆方法的有效性。通过使用蒙特卡洛模拟,我们根据所有充电站都处于繁忙状态的概率以及开始新的充电会话的平均等待时间,验证了电动停车场的功能。

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