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Integration development for supercapacitor controlled distributed generation system

机译:超级电容器控制分布式发电系统的集成开发

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With the construction of large-scale distributed power stations, the distributed generation power imbalance becomes a serious concern as many distributed generation systems and large power grids cannot be consistent with users' load. Wind power, which is used worldwide, is regarded as the typical example of the distributed generation power. In the wind power plants, though reactive power can be easily compensated locally by adding static var devices, the compensation of active power can be difficult. In order to solve the problem, this paper conducts research on the supercapacitor (SC) energy storage system controlled wind power integration, striving to find ways to make the entire output smooth and stable. This method utilizes the characteristics of SC to compensate the intermittent wind power. Case studies on a test system are presented using wind data to substantiate the problem.
机译:随着大规模分布式电站的构建,分布式发电功率不平衡成为一个严重关注的问题,因为许多分布式发电系统和大型电网不能与用户的负载一致。在全球范围内使用的风电被认为是分布式发电功率的典型示例。在风力发电厂中,虽然通过添加静态VAR器件可以容易地补偿无功功率,但是电源的补偿可能是困难的。为了解决问题,本文对超级电容器(SC)储能系统控制的风力集成进行了研究,努力寻找制作整个输出光滑稳定的方法。该方法利用SC的特性来补偿间歇风电。使用风数据呈现测试系统的案例研究以证实问题。

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