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Stability of DC-link voltage affected by phase-locked loop for DFIG-based wind turbine connected to a weak AC system

机译:基于DFIG的风力涡轮机的相位锁定环路影响的直流链路电压的稳定性连接到弱交流系统

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The paper investigates the stability of DC-link voltage, in electromagnetic time scale, of doubly fed induction generator (DFIG) based wind turbine attached to a weak AC system. In weak AC system, the dynamic of phase-locked loop (PLL) is coupled with DFIG converters' control. A reduced order model is proposed for stability analysis of DFIG DC-link voltage. Eigenvalue analysis shows that PLL, active power control (APC) and reactive power control (RPC) of rotor side converter (RSC) mainly participate in dominant oscillation mode of control system. The interactions between PLL and RSC control damage the stability of DC-link voltage in weak grid. Synchronizing and damping components defined by PLL are presented for stability analysis physically. Each control's contribution to synchronizing and damping components is analyzed for different grid strengths and PLL gains. It clearly illustrates how PLL and RSC control interact leading to system instability. Time domain simulation of a detailed model was carried out to verify the validity of the analysis above.
机译:本文研究了基于双馈电磁时间尺度,电磁时间尺度的稳定性,其基于双馈电磁发生器(DFIG)的风力涡轮机连接到弱AC系统。在弱交流系统中,锁相环(PLL)的动态与DFIG转换器控制耦合。提出了一种减少的订单模型,用于DFIG DC-LING电压的稳定性分析。特征值分析表明,转子侧转换器(RSC)的PLL,有源功率控制(APC)和无功功率控制(RPC)主要参与控制系统的主导振荡模式。 PLL和RSC之间的相互作用损坏了弱网格中DC-LINK电压的稳定性。通过PLL定义的同步和阻尼组件用于物理上的稳定性分析。针对不同的电网强度和PLL增益分析了每个控制对同步和阻尼部件的贡献。它清楚地说明了PLL和RSC控制如何交互,导致系统不稳定。进行了详细模型的时域模拟,以验证上面分析的有效性。

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