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Impacts Analysis of Electric Vehicles Integration to the Residential Distribution Grid

机译:电动汽车集成对住宅分配网格的影响分析

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The proliferation of Electric Vehicles (EVs) can cause vulnerability to the electric grid. This paper analyzes the EV integration impacts on the distribution grid that mainly consists of residential loads. The EV uncertainties are addressed by a comprehensive model using arrival time and miles traveled. The penetration of EV is modeled based on the maximum permissible number of customers that can be connected to each node of a representative residential feeder. The temporal power consumption of EVs is calculated by using their daily trip and capacity information which are measured by utilizing specific EV models. An IEEE 123 bus feeder is used for power flow simulation and the demonstration of different case studies. Results from the customer-oriented modeling presented here show that wide voltage deviations occur at local nodes with higher penetration of EVs and it also depends on the distance of the nodes from the substation. The coincidental peak can cause large voltage unbalance at the closer nodes and hourly voltage profiles can vary significantly based on this. While voltage deviation increases with higher EV penetration at the distant nodes, the closer nodes demonstrate insignificant change in voltage deviation for different levels of penetrations. The synergy between EV and grid modeling and the in-depth statistical analysis of voltage distribution at the local nodes are needed by the grid operators for higher EV integration in the future.
机译:电动车辆(EVS)的增殖会导致电网脆弱。本文分析了主要由住宅负载组成的分布网格的EV集成影响。通过抵达时间和旅行的综合模型解决了EV不确定性。 EV的渗透是根据可以连接到代表住宅馈线的每个节点的最大允许客户的渗透。通过使用通过利用特定的EV模型来测量的每日旅行和容量信息来计算EVS的时间功耗。 IEEE 123总线馈线用于电流仿真和不同案例研究的演示。本文提出的以客户为导向的模型结果表明,在局部节点处发生宽电压偏差,具有更高的EV渗透,也取决于节点与变电站的距离。巧合峰可能在较近节点处引起大的电压不平衡,并且每小时电压型材可以基于此显着变化。虽然电压偏差在远处节点处的EV穿透较高,但较近的节点表现出用于不同渗透水平的电压偏差的微不足道的变化。电网运营商需要EV和电网建模与局部节点的电压分布的深入统计分析的协同作用,以便将来更高的EV集成。

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