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MV and LV Residential Grid Impact of Combined Slow and Fast Charging of Electric Vehicles

机译:电动汽车的慢速和快速充电组合对中压和低压住宅电网的影响

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摘要

This article investigates the combined low voltage (LV) and medium voltage (MV) residential grid impact for slow and fast electric vehicle (EV) charging, for an increasing local penetration rate and for different residential slow charging strategies. A realistic case study for a Flemish urban distribution grid is used, for which three residential slow charging strategies are modeled: uncoordinated charging, residential off-peak charging, and EV-based peak shaving. For each slow charging strategy, the EV hosting capacity is determined, with and without the possibility of fast charging, while keeping the grid within its operating limits. The results show that the distribution grid impact is much less sensitive to the presence of fast charging compared to the slow charging strategy. EV-based peak shaving results in the lowest grid impact, allowing for the highest EV hosting capacity. Residential off-peak charging has the highest grid impact, due the load synchronization effect that occurs, resulting in the lowest EV hosting capacity. Therefore, the EV users should be incentivized to charge their EVs in a more grid-friendly manner when the local EV penetration rate becomes significant, as this increases the EV hosting capacity much more than the presence of fast charging decreases it.
机译:本文研究了低电压(LV)和中压(MV)住宅电网的组合对慢速和快速电动汽车(EV)充电,增加的本地普及率以及不同的住宅慢速充电策略的影响。使用了一个佛兰德城市配电网的实际案例研究,对三种住宅慢速充电策略进行了建模:不协调充电,住宅非高峰充电以及基于电动汽车的调峰。对于每种慢速充电策略,确定电动汽车的承载能力(有或没有快速充电的可能性),同时将电网保持在其运行范围内。结果表明,与慢速充电策略相比,配电网对快速充电的影响不那么敏感。基于EV的调峰技术可将对电网的影响降至最低,从而实现最高的EV托管容量。由于出现负载同步效应,因此住宅非高峰充电对电网的影响最大,从而导致最低的EV托管容量。因此,当当地电动汽车的普及率显着提高时,应该激励电动汽车用户以更加友好的电网方式为电动汽车充电,因为这会增加电动汽车的承载能力,而不是快速充电会降低电动汽车的承载能力。

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