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Technical-economic Analysis of Fast Chargers for Plug-in Electric Vehicles in Distribution Networks

机译:配网中插电式电动汽车快速充电器的技术经济分析

摘要

The project is focusing on on finding the optimal grid connection of fast charging stations for electric vehicles. The project was carried out in cooperation with Lyse, which is the regional utility company in Rogaland, Norway. Lyse is developing combined filling stations for gas vehicles and fast chargers for electric vehicles. The first combined station will be built close to an existing petrol station in Luravika, Sandnes. There is space for four fast chargers at the site. The closest distribution substation is located about 200m up the street. There are both a gas pipe and a 22kV cable close to the site. The area is in an urban environment and the distribution grid consists of underground cables and pipes. Different load cases were studied using Powel Netbas for load flow simulations and a simulation tool called Dynko for economic analysis. Each load case included a certain power rating on the EV charging station. To achieve short charging times, the power rating should be high. Power ratings spanning from 125kW to 500kW were analysed for the charging station. Two solutions for grid connection were evaluated. One involved using the existing distribution substation. The other involved installing a new substation close to the new load. The optimal dimensioning of cables and transformers were analysed. The quality of supply and fulfilment of the Norwegian PQ code were evaluated.The economic results showed that it is optimal to use the existing distribution substation as long as the total maximum load at the combined filling and charging station is less than 263kVA. For larger loads, a new substation should be built close to the new load. Replacing the transformer in the existing substation is not an optimal solution for any of the load cases. The cables should be chosen so that the loading is close to 30%. The average optimal transformer loading was around 75%, but the results had a large variance. The quality of supply was investigated for the worst case scenario. All values concerning voltage variations and harmonics were well within the limits of the Norwegian PQ code. The loading of the high voltage distribution grid was considered acceptable. No adjustments are needed in the 22kV grid.
机译:该项目的重点是寻找电动汽车快速充电站的最佳电网连接。该项目是与Lyse合作进行的,Lyse是挪威Rogaland的区域公用事业公司。 Lyse正在开发用于汽油车的组合加油站和用于电动车的快速充电器。第一个联合加油站将建在桑德内斯Luravika的现有加油站附近。现场有四个快速充电器的空间。最近的配电变电站位于街道约200m处。现场附近既有煤气管又有22kV电缆。该地区位于城市环境中,配电网由地下电缆和管道组成。使用Powel Netbas进行潮流模拟,使用名为Dynko的模拟工具进行经济分析,研究了不同的工况。每个负载情况在EV充电站上都包含一定的额定功率。为了缩短充电时间,额定功率应较高。分析了充电站的额定功率从125kW到500kW。评估了两种并网解决方案。其中一项涉及使用现有的配电变电站。另一个涉及在新负载附近安装新的变电站。分析了电缆和变压器的最佳尺寸。评估了挪威PQ规范的供应和履行质量。经济结果表明,只要组合加油站和加油站的最大总负荷小于263kVA,最好使用现有的配电变电站。对于较大的负载,应在新负载附近建一个新的变电站。对于任何负载情况,在现有变电站中更换变压器都不是最佳解决方案。电缆的选择应使负载接近30%。变压器的最佳最佳平均负载约为75%,但结果差异很大。在最坏的情况下对供应质量进行了调查。有关电压变化和谐波的所有值均在挪威PQ代码的范围内。高压配电网的负载被认为是可以接受的。 22kV电网无需调整。

著录项

  • 作者

    Gunderson Nina Wahl;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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