Hopf bifurcation and eigenvalue sensitivity analysis of doubly fed induction generator wind turbine system

Li Yang, Zhao Xu, J. Ostergaard, Z. Dong, Xianhao Ma
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引用次数: 18

Abstract

This paper first presents the Hopf bifurcation analysis for a vector-controlled doubly fed induction generator (DFIG) which is widely used in wind power conversion systems. Using three-phase back-to-back pulse-width-modulated (PWM) converters, DFIG can keep stator frequency constant under variable rotor speed and provide independent control of active and reactive power output. The oscillatory instability of the DFIG has been observed by simulation study. The detailed mathematical model of the DFIG closed-loop system is derived and used to analyze the observed bifurcation phenomena. The loci of the Jacobian's eigenvalues are computed and the analysis shows that the system loses stability via a Hopf bifurcation. The eigenvalue sensitivity analysis with respect to machine and control parameters are performed to assess the impact of parameters upon system stability. Moreover, the Hopf bifurcation boundaries of the key parameters are also given that can facilitate the tuning of those parameters to ensure stable operation.
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双馈风力发电机组系统Hopf分岔及特征值敏感性分析
本文首先对广泛应用于风力发电转换系统的矢量控制双馈感应发电机(DFIG)进行了Hopf分岔分析。DFIG采用三相背靠背脉宽调制(PWM)变换器,可以在变转子转速下保持定子频率不变,实现对有功和无功输出的独立控制。通过仿真研究,观察了DFIG的振荡不稳定性。推导了DFIG闭环系统的详细数学模型,并对观测到的分岔现象进行了分析。计算了雅可比矩阵特征值的轨迹,分析表明系统通过Hopf分岔失去稳定性。通过对机器参数和控制参数的特征值敏感性分析,评估了参数对系统稳定性的影响。此外,还给出了关键参数的Hopf分岔边界,便于对关键参数进行调优以保证系统的稳定运行。
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