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A new approach for low voltage ride through capability in DFIG based wind farm

机译:基于DFIG的风电场的低压穿越能力的新方法

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Protection against voltage dips is very important for transient stability in a Doubly Fed Induction Generator (DFIG). Conventional crowbar circuits have been used for protection of DFIGs; however, they may be insufficient in some transient situations. Therefore, the Low Voltage Ride Through (LVRT) capability was enhanced by a Demagnetization Current Controller (DCC) for the purpose of transient analysis. In addition, both stator and rotor circuit electromotive forces were modeled in a DFIG. The performances of the DFIG models with and without the DCC were compared. Modeling was carried out in a MATLAB/SIMULINK environment. A comparison of system behaviors was made between three-phase faults with and without a stator-rotor dynamic. Parameters for the DFIG including output voltage, speed, electrical torque variations and d-q axis rotor-stator current variations in addition to a 34.5 kV bus voltage were examined. It was found that in the DFIG model the system became stable in a short time when using the DCC. (C) 2016 Elsevier Ltd. All rights reserved.
机译:防止电压突降对于双馈感应发电机(DFIG)的瞬态稳定性非常重要。传统的撬棍电路已用于保护DFIG。但是,在某些临时情况下它们可能不足。因此,为了进行瞬态分析,通过消磁电流控制器(DCC)增强了低压穿越(LVRT)能力。此外,在DFIG中对定子和转子电路的电动势都进行了建模。比较了具有和不具有DCC的DFIG模型的性能。建模是在MATLAB / SIMULINK环境中进行的。比较了具有和不具有定子-转子动态特性的三相故障之间的系统行为。除了34.5 kV母线电压外,还检查了DFIG的参数,包括输出电压,速度,电气转矩变化和d-q轴定子电流变化。发现在DFIG模型中,使用DCC时,系统在短时间内变得稳定。 (C)2016 Elsevier Ltd.保留所有权利。

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