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A Control Algorithm for Electric Vehicle Fast Charging Stations Equipped with Flywheel Energy Storage Systems

机译:一种配备飞轮储能系统的电动汽车快速充电站控制算法

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摘要

This paper proposes a control strategy for plugin electric vehicle (PEV) fast charging station (FCS) equipped with a flywheel energy storage system (FESS). The main role of the FESS is not to compromise the predefined charging profile of PEV battery during the provision of a hysteresis-type active power ancillary service to the overhead power system. In that sense, when the active power is not being extracted from the grid, FESS provides the power required to sustain the continuous charging process of PEV battery. A key characteristic of the whole control system is that it is able to work without any digital communication between the grid-tied and FESS converters. Detailed system modeling and dynamics analysis of the controller are carried out for the different operating modes of the FCS system. A lab-scale prototype was built to validate the proposal. The presented experimental results proved the high accuracy of the theoretical analysis.
机译:本文提出了一种配备飞轮储能系统(FESS)的插电式电动汽车(PEV)快速充电站(FCS)的控制策略。 FESS的主要作用是在向架空电力系统提供磁滞型有功辅助服务期间,不损害PEV电池的预定义充电特性。从这个意义上讲,当没有从电网中提取有功功率时,FESS提供维持PEV电池连续充电过程所需的功率。整个控制系统的一个关键特性是,它可以在并网转换器和FESS转换器之间进行任何数字通信的情况下运行。针对FCS系统的不同操作模式,对控制器进行了详细的系统建模和动力学分析。建立了实验室规模的原型以验证该提案。实验结果证明了理论分析的准确性。

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