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Advanced Control Strategy of DFIG Wind Turbines for Power System Fault Ride Through

机译:DFIG风力发电机组电力系统故障穿越的先进控制策略

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摘要

This paper presents an advanced control strategy for the rotor and grid side converters of the doubly fed induction generator (DFIG) based wind turbine (WT) to enhance the low-voltage ride-through (LVRT) capability according to the grid connection requirement. Within the new control strategy, the rotor side controller can convert the imbalanced power into the kinetic energy of the WT by increasing its rotor speed, when a low voltage due to a grid fault occurs at, e.g., the point of common coupling (PCC). The proposed grid side control scheme introduces a compensation term reflecting the instantaneous DC-link current of the rotor side converter in order to smooth the DC-link voltage fluctuations during the grid fault. A major difference from other methods is that the proposed control strategy can absorb the additional kinetic energy during the fault conditions, and significantly reduce the oscillations in the stator and rotor currents and the DC bus voltage. The effectiveness of the proposed control strategy has been demonstrated through various simulation cases. Compared with conventional crowbar protection, the proposed control method can not only improve the LVRT capability of the DFIG WT, but also help maintaining continuous active and reactive power control of the DFIG during the grid faults.
机译:本文提出了一种基于双馈感应发电机(DFIG)的风力涡轮机(WT)的转子和电网侧变流器的高级控制策略,以根据电网连接要求增强低压穿越(LVRT)能力。在新的控制策略中,当例如在公共耦合点(PCC)处发生电网故障导致的低压时,转子侧控制器可以通过提高WT的转子速度将不平衡功率转换为WT的动能。 。提出的电网侧控制方案引入了一个补偿项,该补偿项反映了转子侧变频器的瞬时直流母线电流,以便在电网故障期间消除直流母线电压波动。与其他方法的主要区别在于,所提出的控制策略可以在故障情况下吸收额外的动能,并显着减少定子和转子电流以及直流母线电压中的振荡。通过各种仿真案例证明了所提出的控制策略的有效性。与传统的撬棍保护相比,所提出的控制方法不仅可以提高DFIG WT的LVRT能力,而且还有助于在电网故障期间维持DFIG的连续有功和无功功率控制。

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