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Smart charging of plug-in hybrid electric vehicles (PHEVs) on the residential electric grid regarding the voltage plan

机译:关于电压计划的插电式混合动力汽车(PHEV)的智能充电

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In the coming years, the Plug-in Hybrid Electric Vehicles (PHEVs) will strongly penetrate in the French Car Fleet. This will create more challenges on the power system including voltage plan in residential areas. For that, in this paper we propose a Rule-Based (RB) algorithm to smart integration of PHEVs in residential electric grid areas. RB algorithm determines the minimum charging power of home-charged PHEVs with/without a charging ban during peak hours which ensures statistically that 100% of the PHEVs batteries have a final full State-of-Charge (SOC). After, we evaluate the consequence of the results obtained from the application of RB algorithm on the voltage plan of a low voltage residential electric grid consisting of 96 houses and powered by a transformer MV/LV 400kVA. For that, we introducing a ηV index that assesses compliance with the standard NF-EN-50160 (voltage quality supplied to housing). Following the results, we infer that it is better to allow charging at any time and we recommend authorities to create a standard that limits to 800W the charging power of home-charged PHEVs.
机译:在未来的几年中,插电式混合动力汽车(PHEV)将大力渗透到法国车队中。这将给电力系统带来更多挑战,包括住宅区的电压计划。为此,在本文中,我们提出了一种基于规则(RB)的算法来对居民电网区域内的PHEV进行智能集成。 RB算法确定在高峰时段有/没有充电禁令的家用充电式PHEV的最小充电功率,这从统计上确保了100%的PHEV电池具有最终的完整充电状态(SOC)。之后,我们评估了RB算法在由96个房屋组成并由MV / LV 400kVA变压器供电的低压住宅电网的电压计划上获得的结果的结果。为此,我们引入了ηV指数来评估是否符合标准NF-EN-50160(提供给外壳的电压质量)。根据结果​​,我们推断最好随时允许充电,并且我们建议当局制定一个标准,将家用PHEV的充电功率限制为800W。

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