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Modified rotor-side converter control design for improving the LVRT capability of a DFIG-based WECS

机译:改进的转子侧转换器控制设计,用于提高基于DFIG的WECS的LVRT能力

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The rapid integration of wind-power generation with existing power grids has caused reliability and stability concerns owing to the negative impact on the dynamic behaviors of power systems. During a fault, large electromotive force is induced in the rotor circuit of a doubly fed induction generator (DFIG) as the circuit is highly vulnerable to it. Such circumstances increase the importance of the low-voltage ride-through (LVRT) capability of a DFIG to ensure stability of the electric grid during transient conditions. Considering these factors, this study focuses on the mitigation of rotor overcurrents and DC-link voltage variations by modifying the control structure of the DFIG converter, thereby enhancing its LVRT capability. Additional voltage terms are injected into the rotor-voltage references to improve the transient behavior of the DFIG control system. In the proposed design, transient rotor currents and DC-link voltage variations are effectively suppressed. Because the voltage terms are introduced outside the current loops, there is no impact on their stability. Furthermore, electromagnetic torque oscillations during the faults are considerably suppressed. Finally, the validity of the proposed design during abnormal grid conditions is demonstrated via MATLAB/Simulink. The results confirm the feasibility and effectiveness of the improved converter control design to enhance the LVRT capability of a DFIG.
机译:风力发电与现有电网的快速整合引起了由于对电力系统动态行为的负面影响而导致可靠性和稳定性问题。在故障期间,随着电路极易受到易感,在双馈感应发生器(DFIG)的转子电路中引起大电动势。这种情况提高了DFIG的低压乘坐(LVRT)能力的重要性,以确保在瞬态条件下的电网的稳定性。考虑到这些因素,本研究专注于通过修改DFIG转换器的控制结构来减轻转子过电流和直流 - 链路电压变化,从而提高其LVRT能力。附加电压术语注入转子电压参考以提高DFIG控制系统的瞬态行为。在所提出的设计中,有效地抑制了瞬态转子电流和DC-LINK电压变化。因为电压术语在电流环外引入,因此对其稳定性没有影响。此外,故障期间的电磁扭矩振荡得到显着抑制。最后,通过MATLAB / Simulink展示了在异常网格条件期间所提出的设计的有效性。结果证实了改进的转换器控制设计的可行性和有效性,提高了DFIG的LVRT能力。

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