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Improvement of Frequency Regulation in VSG-Based AC Microgrid Via Adaptive Virtual Inertia

机译:通过自适应虚拟惯量改进基于VSG的交流微电网的频率调节

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A virtual synchronous generator (VSG) control based on adaptive virtual inertia is proposed to improve dynamic frequency regulation of microgrid. When the system frequency deviates fromthe nominal steady-state value, the adaptive inertia control can exhibit a large inertia to slowthe dynamic process and, thus, improve frequency nadir. And when the system frequency starts to return, a small inertia is shaped to accelerate system dynamics with a quick transient process. As a result, this flexible inertia property combines the merits of large inertia and small inertia, which contributes to the improvement of dynamic frequency response. The stability of the proposed algorithm is proved by Lyapunov stability theory, and the guidelines on the key control parameters are provided. Finally, both hardware-in-the-loop and experimental results demonstrate the effectiveness of the proposed control algorithm.
机译:提出了一种基于自适应虚拟惯性的虚拟同步发电机(VSG)控制,以改善微电网的动态频率调节。当系统频率偏离额定稳态值时,自适应惯性控制会表现出较大的惯性,从而减慢了动态过程,从而提高了频率最低点。当系统频率开始恢复时,会形成一个小的惯性,以快速的瞬态过程加速系统动态。结果,这种灵活的惯性特性结合了大惯性和小惯性的优点,有助于改善动态频率响应。利用Lyapunov稳定性理论证明了该算法的稳定性,并提供了关键控制参数的指导原则。最后,硬件在环和实验结果都证明了所提出的控制算法的有效性。

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