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Impact of high permeability EV charging load on distribution network and its layout planning method

机译:高磁导率电动汽车充电负荷对配电网的影响及规划方法

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In the current ubiquitous electric Internet of things background, as the representative of new energy load, the research and production of EV have been widely concerned. Accurately and comprehensive analysis of the impact of large-scale EVcharging on the power grid will provide theoretical preparation for the development and application of EV, and provide basic guarantee for a large number of EV charging stations to access the power grid.Therefore, this report studies the typical simulation system, and studies the impact of large-scale EV charging load on the power grid from the aspects of safe operation, planning and constructionas well as economy of the power grid. The simulation verifies the impact of large-scale charging load on distribution network voltage and load rate. And analyzes the influence of different access locations and access capacities of large-scale EV charging on the power grid, puts forward the layout planning method of charging stations, and explores the typical structure and operation mode of distribution network suitable for EV charging load access. It provides theoretical preparation for the large-scale EV to be connected to the power grid and has important guiding significance for promoting the development of the power grid technology suitable for the large-scale application of EV.
机译:在当前无所不在的电物联网背景下,作为新能源负载的代表,电动汽车的研究和生产受到了广泛关注。准确、全面地分析大规模电动汽车充电对电网的影响,将为电动汽车的开发和应用提供理论准备,为大量电动汽车充电站接入电网提供基本保障。因此,本报告以典型的仿真系统为研究对象,从电网的安全运行、规划建设和经济性等方面研究了大规模电动汽车充电负荷对电网的影响。仿真验证了大规模充电负荷对配电网电压和负荷率的影响。分析了大规模电动汽车充电的不同接入位置和接入容量对电网的影响,提出了充电站的布局规划方法,探索了适合电动汽车充电负荷接入的典型配电网结构和运行模式。为大规模电动汽车并网提供了理论准备,对推动适合电动汽车大规模应用的电网技术的发展具有重要的指导意义。

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