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Design of Public Plug-in Electric Vehicle Charging Station for Improving LVRT Capability of Grid Connected Wind Power Generation

机译:用于提高电网电网LVRT能力的公共插入式电动车充电站设计

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The growing worldwide mindfulness for a eco-friendly environment include with cost effective and greater accessibility of small scale generating units such as wind and PV which hoisted the interest in distributed generation. The promising emerging future transportation technology is Plug-in Electric Vehicle (PEV). But the issue coupled with the implementation of PEV is the utilities should upgrade the distribution system to meet the demand of this extra load. Thus the integration of microgrid and PEV with distribution system reduces the stress on distribution transformer to meet the demand of the extra load. In this work, the PEV charging station with small scale wind energy system as a primary source to this smart charging station. The control strategy proposed is the coordinate control based on DC link voltage to encourage the operation of PEV charging station in both standalone and grid connected mode. There is a drawback when using Doubly Fed Induction Generator (DFIG) based wind turbine is Low Voltage Ride Through (LVRT). In order to overcome from this issue the charged PEVs in the smart charging station is used to improve the LVRT capability.
机译:全世界为生态友好的环境而越来越多的介意包括具有成本效益和更大的小规模生成单元可及性,如风和光伏,呼吁在分布式发电中的兴趣。有前途的新兴运输技术是插入式电动车(PEV)。但是,与PEV的实施相结合的问题是公用事业公司应该升级分销系统以满足这种额外负载的需求。因此,微电网和PEV与分配系统的集成降低了分配变压器的应力,以满足额外负载的需求。在这项工作中,PEV充电站具有小型风能系统作为该智能充电站的主要源。所提出的控制策略是基于直流链路电压的坐标控制,以鼓励在独立和网格连接模式中进行PEV充电站的操作。使用双馈电气电流发电机(DFIG)的风力涡轮机时存在缺点是通过(LVRT)的低电压骑行。为了克服此问题,智能充电站中的带电PEVS用于提高LVRT能力。

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