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Low voltage ride-through control of doubly-fed induction generator at synchronism

机译:同步供电的双馈感应发电机的低压穿越控制

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The doubly-fed induction generators operating at synchronous speed offers some advantages. At this working mode, the power flowing in the rotor is not significant and thus the converter rating is reduced considerably. The drive can be implemented with the support of a hydro-dynamically controlled gearbox (Voith) which allows the generator works at a determined speed regardless of the rotor speed. This work introduces control methods to ride-through the temporary low voltage for both symmetrical and asymmetrical voltage dip cases at synchronism. For symmetrical dip, a rotor voltage control method is proposed with a determination of transient stator flux. On the other hand, under asymmetrical dip, the electromagnetic vibrations are deal with by controlling the positive and negative sequence separately. Optimal methods to determine the reference values of the negative sequence controller are proposed to eliminate the oscillations simultaneously. The control method is validated by means of simulations.
机译:以同步速度运行的双馈感应发电机具有一些优势。在这种工作模式下,在转子中流动的功率不大,因此变频器的额定值大大降低。可以在液压控制变速箱(Voith)的支持下实现驱动,无论转子转速如何,发电机都可在确定的速度下工作。这项工作介绍了在同步时对称和不对称电压骤降情况下都可以穿越临时低压的控制方法。对于对称骤降,提出了一种确定瞬态定子磁通的转子电压控制方法。另一方面,在非对称倾角下,通过分别控制正序和负序来处理电磁振动。提出了确定负序控制器参考值的最佳方法,以同时消除振荡。通过仿真验证了该控制方法。

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