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Medium Voltage Flywheel Energy Storage System Employing Dual Three-phase Induction Machine with Machine-Side Series-Connected Converters

机译:中电压飞轮储能系统采用双三相电机,机侧连通转换器

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Flywheels as energy storage systems are good candidates for numerous power system applications such as voltage support, serving fluctuating loads, frequency regulation and renewable energy utilization. Most of these applications utilize flywheel energy storage systems (FESSs) at medium voltage ranges. This paper discusses the optimization of the medium voltage high power converters interfacing the FESS with the grid. A dual three phase induction machine (IM) is proposed to drive the flywheel and is controlled via two series-connected three phase voltage source front end converters (VSCs). The proposed configuration is believed to reduce the converters ratings by a half compared to the conventional configuration where three-phase IM with single three-phase VSC is employed. The machine modelling and control are presented, in addition to converters DC links balancing technique. The performance of the proposed system is verified via simulation using MATLAB/Simulink.
机译:作为储能系统的Flywheels是诸如电压支撑,服务波动负载,频率调节和可再生能源利用的众多电力系统应用的良好候选者。这些应用中的大多数应用利用中压范围利用飞轮储能系统(FESS)。本文讨论了介质电压高功率转换器的优化与网格相互作用。建议使用双三相感应机(IM)来驱动飞轮,并通过两个串联连接的三相电压源前端转换器(VSC)来控制。据信,所提出的配置与采用单个三相VSC的三相IM相比,将转换器的额定值减少一半。除了转换器DC链路平衡技术之外,还提供了机器建模和控制。通过使用MATLAB / Simulink仿真验证所提出的系统的性能。

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