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LVRT capability enhancement of DFIG based wind turbine with coordination control of dynamic voltage restorer and inductive fault current limiter

机译:动态电压恢复器和感应故障限流器的协调控制,增强了基于双馈风力发电机的LVRT功能

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摘要

According to the coordination control of a dynamic voltage restorer (DVR) and an inductive fault current limiter (FCL), this paper proposes an efficient low-voltage ride-through (LVRT) scheme for a doubly fed induction generator (DFIG) based wind turbine. The DVR is located to the DFIG’s stator circuit for stabilizing the terminal voltage and decreasing the generator current. The inductive FCL is connected to the DFIG’s rotor circuit for suppressing the rotor overcurrent and protecting the converter. Theoretical discussions on structure, principle and scale criterion of the combined DVR-FCL are conducted, and simulation analyses of the proposed approach to handle symmetrical and asymmetrical faults are done in MATLAB/Simulink. In this study, the dynamic characteristics of the DFIG during the faults are analyzed from multiple aspects, and a detailed comparison of the proposed approach and the single action of DVR or FCL is carried out. From the simulation results, the effectiveness and superiority of the proposed approach are well demonstrated.
机译:根据动态电压恢复器(DVR)和感应故障限流器(FCL)的协调控制,本文提出了一种基于双馈感应发电机(DFIG)的风力发电机组的高效低压穿越(LVRT)方案。 。 DVR位于DFIG的定子电路上,用于稳定端子电压并减小发电机电流。电感性FCL连接到DFIG的转子电路,以抑制转子过电流并保护转换器。对组合式DVR-FCL的结构,原理和尺度准则进行了理论讨论,并在MATLAB / Simulink中对提出的处理对称和非对称故障的方法进行了仿真分析。在本研究中,从多个方面分析了DFIG在故障期间的动态特性,并对所提出的方法与DVR或FCL的单个动作进行了详细的比较。从仿真结果可以很好地证明所提方法的有效性和优越性。

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