首页> 外文期刊>Journal of Zhejiang University. Science, A >Enhanced control of DFIG-used back-to-back PWM VSC under unbalanced grid voltage conditions
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Enhanced control of DFIG-used back-to-back PWM VSC under unbalanced grid voltage conditions

机译:在电网电压不平衡的情况下,增强了DFIG背靠背PWM VSC的控制能力

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摘要

This paper presents a unified positive- and negative-sequence dual-dq dynamic model of wind-turbine driven doubly-fed induction generator (DFIG) under unbalanced grid voltage conditions. Strategies for enhanced control and operation of a DFIG-used back-to-back (BTB) PWM voltage source converter (VSC) are proposed. The modified control design for the grid-side converter in the stationary αβ frames diminishes the amplitude of DC-link voltage ripples of twice the grid frequency, and the two proposed control targets for the rotor-side converter are alternatively achieved, which, as a result, improve the fault-ride through (FRT) capability of the DFIG based wind power generation systems during unbalanced network supply. A complete unbalanced control scheme with both grid- and rotor-side converters included is designed. Finally, simulation was carried out on a 1.5 MW wind-turbine driven DFIG system and the validity of the developed unified model and the feasibility of the proposed control strategies are all confirmed by the simulated results.
机译:本文提出了在不平衡电网电压条件下风力发电机驱动的双馈感应发电机(DFIG)的统一的正序和负序双dq动态模型。提出了增强DFIG背靠背(BTB)PWM电压源转换器(VSC)的控制和操作的策略。固定的αβ框架中电网侧变流器的改进控制设计减小了电网频率两倍的直流母线电压纹波的幅度,并交替实现了两个建议的转子侧变流器控制目标,作为结果,在不平衡的网络供应期间,提高了基于DFIG的风力发电系统的故障穿越能力(FRT)。设计了同时包含电网侧和转子侧变流器的完整不平衡控制方案。最后,在1.5 MW风力发电机驱动的DFIG系统上进行了仿真,仿真结果验证了所开发统一模型的有效性以及所提出的控制策略的可行性。

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