Start-up and Smooth Grid Connection of the Doubly Fed Induction Generator

Marouane El Azzaoui
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Abstract

This paper deals with the start-up and smooth grid connexion of the doubly-fed induction generator (DFIG) system driven by the wind turbine. Stator flux-oriented control for back-to-back converters in the DFIG rotor circuit is presented. The start-up procedure of DFIG begins with the encoder calibration and ends with the grid connection. First, a new algorithm for estimating the initial rotor position is investigated. This algorithm is provided to determine the initial angle, whatever the rotor state (blocked or in rotation). Then, the synchronization of open stator and grid voltages is discussed in depth. By controlling d-axis and q-axis the magnitude and phase of the induced stator voltage are adjusted respectively to be equal to the grid voltage. The proposed method ensures a smooth connection and zero exchange power at the moment of connection. Furthermore, the steps for safe disconnection are presented. Finally, the overall methodology is validated on a 3 kW DFIG laboratory setup.
双馈感应发电机的起动与平稳并网
本文研究了风力发电机驱动双馈感应发电机系统的启动和平稳并网问题。介绍了DFIG转子电路中背对背变换器定子磁通定向控制。DFIG的启动过程从编码器标定开始,到并网结束。首先,研究了一种新的转子初始位置估计算法。该算法用于确定转子在任何状态下(阻塞或旋转)的初始角度。然后,深入讨论了开路定子电压与电网电压的同步问题。通过控制d轴和q轴,分别调节感应定子电压的幅值和相位,使之与电网电压相等。该方法保证了连接时的平滑连接和零交换功率。此外,还介绍了安全断开的步骤。最后,在3kw DFIG实验室装置上验证了整个方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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