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Impedance-Model-Based SSR Analysis for Type 3 Wind Generator and Series-Compensated Network

机译:3型风力发电机和串联补偿网络的基于阻抗模型的SSR分析

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Interaction between doubly fed induction generator (DFIG) Type 3 wind generators and series-compensated networks can lead to subsynchronous resonance (SSR) oscillations—a phenomenon observed in the real world. In this paper, impedance-based Nyquist stability criterion is applied to analyze the SSR phenomena. Impedance models of a DFIG along with its rotor-side converter (RSC) and grid-side converter, and a series-compensated network are derived in terms of space vectors. The DFIG impedance and the network impedance are analyzed to show the impact of wind speed, compensation level, and RSC current controller gain on SSR stability. Nyquist maps are also used to demonstrate the impact on SSR stability. Simulation studies are carried out to show SSR controller interaction. This paper successfully demonstrates that the interaction between the electric network and the converter controller is a leading cause of the SSR phenomena recently observed in wind generation grid integration.
机译:双馈感应发电机(DFIG)3型风力发电机与串联补偿网络之间的相互作用会导致亚同步谐振(SSR)振荡,这是在现实世界中观察到的现象。本文采用基于阻抗的奈奎斯特稳定性准则来分析SSR现象。 DFIG及其转子侧转换器(RSC)和电网侧转换器以及串联补偿网络的阻抗模型是根据空间矢量得出的。分析了DFIG阻抗和网络阻抗,以显示风速,补偿水平和RSC电流控制器增益对SSR稳定性的影响。奈奎斯特图也用于证明对SSR稳定性的影响。仿真研究表明SSR控制器之间的相互作用。本文成功地证明了电网与变流器控制器之间的相互作用是最近在风力发电并网中发现的SSR现象的主要原因。

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