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Adaptive Inertia Control of Virtual Synchronous Generator Based on Power Feedback

机译:基于电源反馈的虚拟同步发电机的自适应惯性控制

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In traditional power electronic power generation devices, there is no rotor inertia like a synchronous machine. Load changes will cause sudden changes in the frequency of the microgrid system, which can easily trigger the protection device of the system and have a negative impact on the stable operation of the microgrid system. At the same time, if there is a large inertia in control loop, it will reduce the response speed of the system and easily cause oscillation. In this article, an adaptive inertia control technology based on power feedback is proposed. By adding power feedback control in the inertia link, the rate of change of frequency can be suppressed and the transient response of the system can be improved at the same time. Finally, the effectiveness of the proposed method is validated by the simulation results.
机译:在传统的电力电子发电装置中,没有像同步机的转子惯性。 负载变化将导致微电网系统的频率突然变化,这可以很容易地触发系统的保护装置,对微电网系统的稳定运行产生负面影响。 同时,如果控制回路中存在大型惯性,它将降低系统的响应速度,并容易地引起振荡。 在本文中,提出了一种基于电力反馈的自适应惯性控制技术。 通过在惯性链路中添加电源反馈控制,可以抑制频率的变化率,并且系统可以同时提高系统的瞬态响应。 最后,通过模拟结果验证了所提出的方法的有效性。

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