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Impact of Electric Vehicle On-Board Single-Phase Charging Strategies on a Flemish Residential Grid

机译:电动汽车车载单相充电策略对佛兰德住宅电网的影响

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This paper quantifies the impact of single-phase on-board charging strategies for electric vehicles (EVs) in a case study of a heavily loaded unbalanced Flemish three-phase low-voltage residential grid. Voltage droop charging and EV-based peak shaving, which do not need communication with the distribution grid, are modeled and the results are compared. The grid voltages are analyzed according to the probabilistic and deterministic limits of the EN50160 standard, for a 100% EV penetration rate. The impact on the EV user comfort is evaluated in terms of charging time and electrically driven distances. The chosen voltage droop charging eliminates critical voltages below 0.85 pu and reduces voltage unbalance, with a limited impact on the total charging time. EV-based peak shaving makes the grid fully compliant with EN50160 and avoids the need for an infrastructure upgrade. The electrically driven distances are not influenced by the charging strategies.
机译:本文以重载的不平衡佛兰德斯三相低压住宅电网为例,量化了单相车载充电策略对电动汽车(EV)的影响。对不需要与配电网通信的电压降充电和基于EV的削峰进行了建模,并对结果进行了比较。对于100%EV渗透率,根据EN50160标准的概率和确定性极限来分析电网电压。根据充电时间和电动距离评估对电动汽车用户舒适度的影响。所选的电压下降充电消除了低于0.85 pu的临界电压,并减少了电压不平衡,对总充电时间的影响有限。基于EV的调峰技术使电网完全符合EN50160的要求,并且无需升级基础架构。电动距离不受充电策略的影响。

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