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Impedance-Based Analysis of the Dynamic Stability for the Weak Grid-Connected DFIG during LVRT

机译:基于阻抗的LVRT弱并网DFIG动态稳定性分析

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This paper establishes a small-signal impedance model of the doubly fed induction generator (DFIG) system under weak grid faults taking the dynamic of controller and impedance controller into account. Based on the impedance model, the instability mechanism of the DFIG system during LVRT is analyzed using the generalized Nyquist criterion (GNC). The analysis result shows that the small-signal instability of the DFIG system is due to the DFIG-based wind turbines (WTs) in account of the control showing the negative damping characteristics during grid fault. The small-signal stability of the DFIG system can be improved by changing the bandwidth of the phase-locked loop (PLL). The Simulation results verify the correctness of the analysis.
机译:本文考虑了控制器和阻抗控制器的动态特性,建立了弱电网故障下双馈感应发电机系统的小信号阻抗模型。基于阻抗模型,使用广义奈奎斯特准则(GNC)分析了LVRT期间DFIG系统的不稳定机制。分析结果表明,DFIG系统的小信号不稳定性是由于基于DFIG的风力涡轮机(WTs)所致,因为该控件显示了电网故障期间的负阻尼特性。通过更改锁相环(PLL)的带宽,可以提高DFIG系统的小信号稳定性。仿真结果验证了分析的正确性。

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