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Analysis of the control limit of crowbar-less LVRT methods for DFIG-based wind power systems under asymmetrical voltage dips

机译:不对称电压坡度下DFIG型风电系统的挤压机LVRT方法控制极限分析

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For doubly-fed induction generator (DFIG)-based wind power systems, when crowbar-less control methods are used for low voltage ride through (LVRT), the LVRT capabilities are different depending on the specific method. However, because of the limited voltage output of rotor side converter (RSC), there is a limit for crowbar-less control methods. In order to analyze the limit under asymmetrical voltage dips, an optimal crowbar-less control method is proposed to minimize the rotor current during faults. Based on the proposed method, the control limit under asymmetrical faults can be obtained, and then the LVRT capabilities for asymmetrical faults, with crowbar-less control methods, can be evaluated. Finally, a case study of a typical 1.5 MW DFIG-based wind power system is carried out, and from the results, it can be seen that among the three types of asymmetrical faults, the phase-to-phase faults are the most difficult to ride through, and the single-phase-to-ground faults are the easiest to ride through.
机译:对于双馈感应发电机(DFIG)的风电系统,当绒耳的控制方法用于低电压骑行(LVRT)时,根据具体方法,LVRT功能不同。但是,由于转子侧转换器(RSC)的电压输出有限,因此绒耳柱的控制方法存在限制。为了分析不对称电压下降的极限,提出了最佳的撬棍控制方法,以最小化故障期间的转子电流。基于所提出的方法,可以获得不对称故障的控制极限,然后可以评估具有撬棍控制方法的不对称故障的LVRT能力。最后,进行了一种典型的1.5MW基于DFIG的风电系统的案例研究,从结果中可以看出,在三种类型的不对称断层中,相位与相位断层最难以骑行,单相对地的故障是最容易骑的。

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