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A novel vector-based hysteresis current regulator for doubly-fed induction generator wind turbines under non-ideal supply conditions

机译:非理想供电条件下双馈感应发电机风力涡轮机的基于矢量的新型磁滞电流调节器

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摘要

This paper proposes a novel vector-based hysteresis current regulator (VBHCR) in the rotor-side converter of doubly-fed induction generator (DFIG) based wind turbine to enhance its operation under non-ideal supply voltage conditions. First, the induction generator is modelled using the "Γ-form" equivalent circuit and the stator-voltage-oriented vector control of DFIG is introduced. Then, the principle and practical implementation of the proposed VBHCR in the rotor-side converter of DFIG is presented. This current regulator employs two sets of hysteresis comparators working in three-phase and rotor reference frames, integrated with a switching table. Compared to the commonly-used proportional-integral current regulators, it reveals very fast transient response with a simple control structure. Simulation results, obtained for a 1.5 MW DFIG, show the validity of the proposed control scheme under normal operation conditions, as well as its desirable steady-state performance. Furthermore, the advantages of the proposed current regulator under non-ideal supply voltage conditions (including unbalance and harmonic distortions) are illustrated.
机译:本文提出了一种新型的基于矢量的磁滞电流调节器(VBHCR),用于基于双馈感应发电机(DFIG)的风力涡轮机的转子侧转换器,以增强其在非理想电源电压条件下的运行。首先,使用“Γ-形式”等效电路对感应发电机进行建模,并引入DFIG的面向定子电压的矢量控制。然后,介绍了所提出的VBHCR在DFIG的转子侧变流器中的原理和实际实现。该电流调节器采用两组在三相和转子参考系中工作的磁滞比较器,并集成了一个开关表。与常用的比例积分电流调节器相比,它具有简单的控制结构,显示出非常快的瞬态响应。针对1.5 MW DFIG所获得的仿真结果表明,所提出的控制方案在正常运行条件下的有效性以及其理想的稳态性能。此外,还说明了所建议的电流调节器在非理想电源电压条件下(包括不平衡和谐波失真)的优势。

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