Modeling and control of flexible HEV charging station upgraded with flywheel energy storage

T. Dragičević, Q. Shafiee, Dan Wu, L. Meng, J. Vasquez, J. Guerrero
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引用次数: 5

Abstract

This paper deals with the design of a fast DC charging station (FCS) for hybrid electric vehicles (HEVs) that is connected at a remote location. Power rating of this new technology can go up to a hundred kW and it represents a main challenge for its broad acceptance in distribution systems. In that sense, growing number of these stations, if operated in a non-flexible regime, will start to cause problems in future distribution systems such as overloads of local network's corridors and reduction of its total equivalent spinning reserves. A power balancing strategy based on a local energy storage system (ESS) is proposed in this paper. Flywheel has been selected as the means of storing energy as it provides high power density and does not have significant performance degradation along its lifetime. Implemented control algorithm uses the energy stored in flywheel to compensate for the peak of power introduced by HEV charger, avoiding big initial stress in grid converter and also is able to limit the maximum extracted power. In addition, feed-forward compensation has been implemented to reduce the voltage dip within the station. Real time simulation results, that prove the validity of proposed approach, have been presented.
飞轮储能升级的柔性混合动力汽车充电站建模与控制
本文研究了一种远程连接的混合动力汽车快速直流充电站的设计。这种新技术的额定功率可以达到100千瓦,这是其在配电系统中广泛接受的主要挑战。从这个意义上说,如果以一种不灵活的制度运作,越来越多的这些电台将开始在未来的分配系统中造成问题,例如当地网络走廊的过载和其总等效旋转储备的减少。提出了一种基于局部储能系统(ESS)的电力均衡策略。飞轮已被选择作为存储能量的手段,因为它提供了高功率密度,并没有显著的性能下降沿其寿命。实现的控制算法利用飞轮存储的能量来补偿HEV充电器引入的功率峰值,避免了电网变流器的大初始应力,也能够限制最大提取功率。此外,还采用了前馈补偿,以减小站内电压的下降。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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