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Analysis of the Behavior of Undamped and Unstable High-Frequency Resonance in a DFIG System

机译:DFIG系统中无阻尼和不稳定的高频谐振的行为分析

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As the wind power generation develops, the doubly fed induction generator (DFIG) based wind power system may suffer subsynchronous resonance and high-frequency resonance (HFR) in the series and parallel compensated weak network. The principle and frequency of HFR have been discussed using the Bode diagram as an analysis tool. However, the HFR can be categorized into two different types: undamped HFR (which exists in steady state) and unstable HFR (which eventually results in complete instability and divergence), both of them are not investigated before. Since both the undamped HFR and unstable HFR are critical to the output wind power quality as well as the safe and reliable operation of the DFIG system, it is meaningful to discuss them using the Nyquist criterion from two perspectives: 1) determining either the undamped HFR or the unstable HFR occurs; and 2) estimating the amplitude of the undamped HFR. The influence factors, including the weak network shunt capacitance and the current PI controller parameters, are discussed when estimating the amplitude of the undamped HFR. The experimental and simulation results of a 7.5 kW down-scaled DFIG setup are provided to validate the analysis of the undamped HFR and unstable HFR.
机译:随着风力发电的发展,基于双馈感应发电机(DFIG)的风力发电系统可能在串联和并联补偿的弱网络中遭受次同步谐振和高频谐振(HFR)。使用Bode图作为分析工具讨论了HFR的原理和频率。但是,HFR可以分为两种类型:未阻尼的HFR(处于稳定状态)和不稳定的HFR(最终导致完全不稳定和发散),这两种方法之前都没有进行研究。由于无阻尼HFR和不稳定HFR对输出风电质量以及DFIG系统的安全可靠运行都至关重要,因此从两个角度使用Nyquist准则对其进行讨论是有意义的:1)确定无阻尼HFR或发生不稳定的HFR; 2)估计无阻尼HFR的幅度。在估算无阻尼HFR的幅度时,讨论了影响因素,包括弱网络并联电容和当前PI控制器参数。提供了7.5 kW缩减DFIG设置的实验和仿真结果,以验证对无阻尼HFR和不稳定HFR的分析。

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