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Forced Oscillations in Wind Energy Generation Systems

机译:风力发电系统中的强迫振荡

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Use of the doubly fed induction generator (DFIG) in wind energy generation systems allows variable speed operation by using partially rated back-to-back quadruple active and reactive power PWM converters. The control of the system is very complex. Despite numerous new control schemes reported in the literature, these control techniques, which are designed to solve some particular control problems, have rarely been tested for general stability problems systematically. Specifically, nonlinear stability analysis of the system has not been reported before. In this paper, we use a commonly used control scheme to study the system stability in terms of the oscillatory magnitude of the voltage link capacitor of the system under unbalanced grid voltage. An important variation parameter, frequency of the unbalanced grid voltage, is used in this paper. Stability diagrams is collected using the voltage of the link capacitor of the back-to-back PWM power converters, exposing the possibility of chaotic behavior of the wind generation system. This paper thus plays the role of characterizing wind energy generation systems using nonlinear stability analysis.
机译:在风力发电系统中使用双馈感应发电机(DFIG),可以通过使用部分额定的背靠背四重有功和无功PWM转换器来变速运行。系统的控制非常复杂。尽管文献中报道了许多新的控制方案,但是设计用于解决某些特定控制问题的这些控制技术很少针对系统的一般稳定性问题进行过测试。具体来说,以前尚未报道过系统的非线性稳定性分析。在本文中,我们使用一种常用的控制方案来研究系统不稳定性,即在电网电压不平衡的情况下,系统的电压链路电容器的振荡幅度。本文使用了一个重要的变化参数,即不平衡电网电压的频率。使用背靠背PWM功率转换器的链路电容器的电压来收集稳定性图,从而揭示了风力发电系统混乱行为的可能性。因此,本文起着利用非线性稳定性分析表征风能发电系统的作用。

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