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Non-controlled Fault Current Limiter to Improve Fault Ride through Capability of DFIG-Based Wind Turbine

机译:非受控故障限流器,通过基于双馈风力发电机的风力发电机的功能来改善故障范围

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摘要

In this paper, a non-controlled fault current limiter (FCL) is proposed to improve fault ride through capability of doubly fed induction generator (DFIG)-based wind turbine. Cooperative operation of chopper circuit and the non-controlled FCL, which is located in rotor side of the DFIG, is studied. It is demonstrated that locating the proposed topology in the rotor side is effective from leakage coefficient point of view in limiting transient over currents rather than stator side. Furthermore, it is shown that, by obtaining optimum non-superconducting reactor value, rate of fault current change is limited to lower than maximum rate of current change in semiconductor switches of the DFIG’s converters during fault. Design methodology of non-superconducting reactor value is investigated. Operation of the non-controlled FCL in the rotor side is compared to crowbar protection scheme and results will be discussed. PSCAD/EMTDC software is employed to simulate the proposed scheme and prove its effectiveness.
机译:本文提出了一种非控制故障限流器(FCL),以提高基于双馈感应发电机(DFIG)的风力发电机的故障穿越能力。研究了斩波电路与位于DFIG转子侧的不受控制的FCL的协作操作。从泄漏系数的角度证明,在转子侧设置建议的拓扑结构对于限制瞬态电流而不是定子侧是有效的。此外,它表明,通过获得最佳的非超导电抗器值,故障电流变化率被限制为低于故障期间DFIG转换器的半导体开关的最大电流变化率。研究了非超导电抗器的设计方法。将转子侧非受控FCL的操作与撬棒保护方案进行了比较,并将讨论结果。使用PSCAD / EMTDC软件对所提出的方案进行仿真并证明其有效性。

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