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Research on stability of grid-connected LCL-filtered inverter with capacitor current feedback active damping control

机译:电容器电流反馈电容器电流反馈电容器电流反馈逆变器稳定性研究

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For grid-connected LCL-filtered inverter, the inherent resonance of LCL filter endangers the stability so that the inverter is hard to be controlled. To solve the resonance, the capacitor-current-feedback active damping (AD) is welcomed. However, the digital control delay was not seriously considered in the previous studies. The research on the stability with such control considering the digital control delay is lacking. Thus, this paper aims to provide a deep analysis of the capacitor-current-feedback AD in a digitally-controlled inverter. A stable region is derived. It is proved that the stable region for the capacitor-current-feedback AD is closely related to the sampling and computation delay, the control frequency, the resonance frequency and the capacitor-current-feedback factor. Several suitable approaches are then proposed to improve the performance with the capacitor-current-feedback AD. The experimental results verify the presented research.
机译:对于电网连接的LCL过滤逆变器,LCL过滤器的固有共振止痛符合稳定性,以便难以控制逆变器。为了解决谐振,欢迎电容器电流反馈有源阻尼(AD)。然而,在以前的研究中没有认真考虑数字控制延迟。缺乏考虑数字控制延迟的这种控制稳定性的研究。因此,本文旨在为数字控制逆变器中的电容器电流反馈广告提供深入的分析。衍生出稳定的区域。事实证明,电容器电流反馈广告的稳定区域与采样和计算延迟,控制频率,谐振频率和电容器电流反馈系数密切相关。然后提出了几种合适的方法来提高电容器电流反馈广告的性能。实验结果验证了所提出的研究。

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