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Symmetrical and asymmetrical low-voltage ride through of doubly-fed induction generator wind turbines using gate controlled series capacitor

机译:使用栅极控制串联电容器的双馈感应发电机风力涡轮机的对称和非对称低压穿越

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摘要

This study proposes a new method to improve low-voltage ride through of the doubly-fed induction generator (DFIG) wind turbines (WTs) using gate-controlled series capacitor (GCSC) in series with the generator rotor. Using GCSC, as soon as a voltage dip occurs at the generator's terminals, the GCSC inserts its capacitor in series with the rotor, increasing the voltage seen by the rotor winding. Consequently, the rotor over-current is limited and transmission of the inrush energy to the rotor side converter is reduced. Moreover, by this method, the chopper is not required for protecting the DC-link capacitor. Unlike the Crowbar method, which control of the generator is lost during the fault, the proposed method in this study avoids the loss of control during the grid faults. To validate the effectiveness of the proposed method, extensive time-domain simulation is performed using MATLAB/SIMULINK on a 1.5 MW DFIG-based WT.
机译:这项研究提出了一种新方法,该方法使用与发电机转子串联的栅极控制串联电容器(GCSC)来改善双馈感应发电机(DFIG)风力涡轮机(WTs)的低压穿越。使用GCSC,一旦发电机端子上出现电压突降,GCSC就会将其电容器与转子串联插入,从而增加转子绕组所见的电压。因此,限制了转子的过电流,并且减少了涌入能量向转子侧转换器的传递。而且,通过这种方法,不需要斩波器来保护直流母线电容器。与Crowbar方法不同,后者在故障期间会失去对发电机的控制,因此本研究中提出的方法避免了在电网故障期间失去控制。为了验证所提出方法的有效性,使用MATLAB / SIMULINK在基于1.5 MW DFIG的WT上进行了广泛的时域仿真。

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