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Probabilistic agent-based model of electric vehicle charging demand to analyse the impact on distribution networks

机译:基于概率代理的电动汽车充电需求模型分析了对配电网络的影响

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摘要

Electric Vehicles (EVs) have seen significant growth in sales recently and it is not clear how power systems will support the charging of a great number of vehicles. This paper proposes a methodology which allows the aggregated EV charging demand to be determined. The methodology applied to obtain the model is based on an agent-based approach to calculate the EV charging demand in a certain area. This model simulates each EV driver to consider its EV model characteristics, mobility needs, and charging processes required to reach its destination. This methodology also permits to consider social and economic variables. Furthermore, the model is stochastic, in order to consider the random pattern of some variables. The model is applied to Barcelona’s (Spain) mobility pattern and uses the 37-node IEEE test feeder adapted to common distribution grid characteristics from Barcelona. The corresponding grid impact is analyzed in terms of voltage drop and four charging strategies are compared. The case study indicates that the variability in scenarios without control is relevant, but not in scenarios with control. Moreover, the voltages do not reach the minimum voltage allowed, but the MV/LV substations could exceed their capacities. Finally, it is determined that all EVs can charge during the valley without any\udnegative effect on the distribution grid. In conclusion, it is determined that the methodology presented allows the EV charging demand to be calculated, considering different variables, to obtain better accuracy in the results.
机译:电动汽车(EV)最近的销售量出现了大幅增长,目前尚不清楚动力系统如何支持大量汽车的充电。本文提出了一种方法,可以确定总的电动汽车充电需求。用于获取模型的方法基于基于代理的方法来计算特定区域中的EV充电需求。该模型模拟每个EV驾驶员,以考虑其EV模型的特性,出行需求和到达目的地所需的充电过程。这种方法还可以考虑社会和经济变量。此外,该模型是随机的,以便考虑某些变量的随机模式。该模型应用于巴塞罗那的(西班牙)移动性模式,并使用37节点IEEE测试馈线,该馈线适用于巴塞罗那的常见配电网特性。根据电压降分析了相应的电网影响,并比较了四种充电策略。案例研究表明,在没有控制的情况下的可变性是相关的,但在有控制的情况下则无相关性。此外,电压没有达到允许的最小电压,但是MV / LV变电站可能会超过其容量。最后,确定所有电动汽车都可以在低谷期间充电,而对配电网没有任何负面影响。总之,可以确定的是,所提出的方法可以考虑不同变量来计算电动汽车充电需求,从而获得更好的结果准确性。

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