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Impact of plug in electric vehicle battery charging on a distribution system

机译:插入式电动汽车电池充电对配电系统的影响

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摘要

Plug-in Electric Vehicles (PEV) battery chargers are mostly connected to the low-voltage grid for charging, hence their increased penetration coupled with uncoordinated charging could impact the distribution system in terms of voltage unbalance and transformer overloading. Although PEV battery charging is increasing, impact on the distribution system is not fully understood. This study focuses on voltage unbalance caused by uneven distribution of PEV penetration among the phases. Using real data provided by utility, a distribution system has been modeled and tested using MATLAB-SIMULINK. PEV penetration level at 10-80% is studied, voltage unbalance is calculated and transformer overloading is analyzed. In the simulations conducted without PEV penetration, the real data at intellirupters of the system were close to simulated system voltages and currents. As PEV adoption is expected to increase, the impact on the distribution system will increase. Coordinated or smart charging of PEVs will be essential for consumers and utilities.
机译:插电式电动汽车(PEV)电池充电器大多连接至低压电网进行充电,因此,其渗透率的增加以及不协调的充电可能会在电压不平衡和变压器过载方面影响配电系统。尽管PEV电池的充电在增加,但对配电系统的影响尚不完全清楚。这项研究的重点是由各相之间PEV渗透的不均匀分布引起的电压不平衡。使用实用程序提供的真实数据,已使用MATLAB-SIMULINK对分配系统进行了建模和测试。研究了10-80%的PEV渗透水平,计算了电压不平衡量,并分析了变压器过载。在没有PEV渗透的情况下进行的仿真中,系统智能设备上的实际数据接近仿真的系统电压和电流。随着PEV的采用预计会增加,对分配系统的影响也会增加。 PEV的协调充电或智能充电对于消费者和公用事业至关重要。

著录项

  • 作者

    Bunga Sharmila Kumari;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 English
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