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Hybrid Control Strategy for a Doubly Fed Induction Generator in Medium Voltage Wind Power System under Unbalanced Grid Conditions

机译:不平衡网格条件下中压风电系统双馈电力系统的混合控制策略

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This paper investigates control algorithms for a doubly fed induction generator with a back-to-back three-level neutral-point clamped voltage source converter in medium voltage wind power system under unbalanced grid conditions. Negative sequence control algorithms to compensate for unbalanced conditions have been investigated with respect to four performance factors; fault ride-through capability, instantaneous active power pulsation, harmonic distortions and torque pulsation. The control algorithm having zero amplitude of torque ripple shows the most cost-effective performance concerning torque pulsation. The least active power pulsation is produced by control algorithm that nullifies the oscillating component of the instantaneous stator active and reactive power. Combination of these two control algorithms depending on the operating requirements and depth of grid unbalance presents most optimized performance factors under the generalized unbalanced operating conditions leading to high performance DFIG wind turbine system.
机译:本文在不平衡电网条件下调查了在中压风电系统中具有背对背三级中性点钳位电压源转换器的双馈感应发生器的控制算法。对四种性能因素研究了用于补偿不平衡条件的负序控制算法;故障驾驶能力,瞬时主动功率脉动,谐波畸变和扭矩脉动。具有零扭矩纹振幅度的控制算法显示了最具成本效益的扭矩脉动的性能。通过控制算法产生最少的有效功率脉动,从而使瞬时定子的振荡部件无效和无功功率。这两个控制算法的组合根据网格不平衡的操作要求和深度呈现最优化的性能因子,这是通用的不平衡操作条件,导致高性能DFIG风力涡轮机系统。

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