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Impedance-Based High-Frequency Resonance Analysis of DFIG System in Weak Grids

机译:电网中基于阻抗的DFIG系统高频谐振分析

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The impedance-based model of doubly fed induction generator (DFIG) systems, including the rotor part (rotor side converter (RSC) and induction machine), and the grid part (grid side converter (GSC) and its output filter), has been developed for analysis and mitigation of the subsynchronous resonance (SSR). However, the high-frequency resonance (HFR) of DFIG systems due to the impedance interaction between the DFIG system and parallel compensated weak network is often overlooked. This paper, thus, investigates the impedance characteristics of DFIG systems for the analysis of HFR. The influences of the rotor speed variation, the machine mutual inductance and the digital control delay are evaluated. Two resonances phenomena are revealed, i.e., 1) the series HFR between the DFIG system and weak power grid; 2) the parallel HFR between the rotor part and the grid part of DFIG system. The impedance modeling of DFIG system and weak grid network, as well as the series HFR between DFIG system and parallel compensated weak network has been validated by experimental results.
机译:已经建立了双馈感应发电机(DFIG)系统的基于阻抗的模型,包括转子部分(转子侧变流器(RSC)和感应电机)以及电网部分(电网侧变流器(GSC)及其输出滤波器)。开发用于分析和缓解次同步谐振(SSR)。然而,由于DFIG系统与并联补偿的弱网络之间的阻抗相互作用,DFIG系统的高频谐振(HFR)通常被忽略。因此,本文研究了用于分析HFR的DFIG系统的阻抗特性。评估了转子速度变化,电机互感和数字控制延迟的影响。揭示了两个共振现象,即:1)DFIG系统与弱电网之间的串联HFR; 2)DFIG系统的转子部分和网格部分之间的并联HFR。实验结果验证了DFIG系统与弱电网的阻抗模型以及DFIG系统与并联补偿弱网络之间的串联HFR。

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