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Analysis of Middle Frequency Resonance in DFIG System Considering Phase-Locked Loop

机译:考虑锁相环的DFIG系统中频谐振分析

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As the wind power technology develops, the doubly fed induction generator (DFIG) based wind power system, when connected to a weak network with large impedance, may suffer resonances, i.e., subsynchronous resonance or high-frequency resonance when connected to the series- or parallel- weak network. Besides these two resonances, a middle frequency resonance (MFR) between 200 and 800 Hz may appear when the phase-locked loop (PLL) with fast control dynamics is applied. In order to analyze the MFR, the DFIG system impedance considering the PLL is studied based on the vector-oriented control strategy in rotor-side converter and grid-side converter. On the basis of the established impedance modeling of the DFIG system, it is found that the PLL with fast control dynamics may result in the occurrence of MFR due to a decreasing phase margin. The simulation results of both a 7.5 kW small-scale DFIG system and a 2 MW large-scale DFIG system are provided to validate the theoretical analysis of the MFR.
机译:随着风力发电技术的发展,当基于双馈感应发电机(DFIG)的风力发电系统连接到具有大阻抗的弱电网时,当连接到串联或串联电网时,可能会遭受共振,即次同步共振或高频共振。并行弱网络。除了这两个谐振之外,当应用具有快速控制动态特性的锁相环(PLL)时,可能还会出现200至800 Hz之间的中频谐振(MFR)。为了分析MFR,基于转子侧变流器和电网侧变流器的矢量控制策略,研究了考虑了PLL的DFIG系统阻抗。根据已建立的DFIG系统的阻抗模型,发现具有快速控制动态特性的PLL可能会由于相位裕量减小而导致MFR的发生。提供了7.5kW小型DFIG系统和2MW大型DFIG系统的仿真结果,以验证MFR的理论分析。

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