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A Novel Control Strategy for Large-Capacity Energy Storage Systems Based on Virtual Synchronous Generator

机译:基于虚拟同步发电机的大容量能量存储系统的新型控制策略

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Large-capacity energy storage systems can meet the demands of micro-grid and the smart grid. But the traditional control method is difficult to realize plug and play and seamless switching between different operation modes, it has limited the roles of large-capacity energy storage system. Virtual synchronous generator (VSG) has became a hot topic in recent years because of its synchronous generator external characteristics, such as inertia, frequency voltage regulation and automatic phase lock. A novel control strategy based on VSG is proposed for large-capacity energy storage systems. Firstly, the topological structure characteristics of large-capacity energy storage systems and the basic principle of the novel control strategy based on VSG are introduced, then setting method of the control strategy parameters is given. Finally, the proposed control strategy is verified by simulation and experiment. The results of simulation and experiment show that large-capacity energy storage systems based on this novel control strategy can automatically adjust the active power output according to the grid frequency changes and realize seamless switching between connected-grid and off-grid mode.
机译:大容量储能系统可以满足微电网和智能电网的需求。但传统的控制方法难以实现不同操作模式之间的插头和播放和无缝切换,它限制了大容量储能系统的作用。由于其同步发电机外部特性,如惯性,频率电压调节和自动相位锁等,虚拟同步发电机(VSG)成为近年来的热门话题。提出了一种基于VSG的新型控制策略,用于大容量能量存储系统。首先,介绍了大容量储能系统的拓扑结构特性和基于VSG的新型控制策略的基本原理,然后给出了控制策略参数的设置方法。最后,通过模拟和实验验证了所提出的控制策略。仿真和实验结果表明,基于该新颖控制策略的大容量能量存储系统可以根据网格频率的变化自动调节有源电源输出,并实现连接电网和离网模式之间的无缝切换。

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