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Coordinated control strategy for doubly-fed induction generator with DC connection topology

机译:直流连接拓扑的双馈感应发电机协调控制策略

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摘要

With the development of wind power generation system and requirement of large-scale and long-distance power transmission, it is greatly important for wind farm to achieve the high effective DC grid connection technology. This study presents a novel grid connection topology for doubly-fed induction generator (DFIG) connected to a DC-link, in which a stator side converter and rotor side converter fed by a common DC bus are employed. Coordinated control method for the converters is proposed to regulate the electromagnetic torque directly based on the air-gap flux orientation technique. Compared with the traditional grid connection system, the proposed system has a lot of advantages such as simpler structure, lower requirement for the converter capacity and higher power transmission efficiency. The power distribution between stator side converter and rotor side converter is analysed based on the proposed grid connection topology. Finally, DFIG-based experimental system is developed to validate the correctness and availability of the proposed DC grid connection topology and control strategy.
机译:随着风力发电系统的发展以及对大规模,长距离输电的需求,实现高效的直流并网技术对风电场具有重要意义。这项研究提出了一种用于双馈感应发电机(DFIG)的新型电网连接拓扑,该双馈感应发电机连接到直流母线,其中采用了由公共直流母线供电的定子侧变流器和转子侧变流器。提出了一种基于气隙磁通定向技术的变流器协调控制方法,以直接调节电磁转矩。与传统的电网连接系统相比,该系统具有结构简单,对变流器容量要求低,输电效率高等优点。基于提出的并网拓扑,分析了定子侧变流器与转子侧变流器之间的功率分配。最后,开发了基于DFIG的实验系统,以验证所提出的直流电网连接拓扑和控制策略的正确性和可用性。

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