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Controller saturation nonlinearity in doubly fed induction generator-based wind turbines under unbalanced grid conditions

机译:不平衡电网条件下基于双馈感应发电机的风力发电机的控制器饱和非线性

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摘要

Doubly fed induction generator (DFIG) is widely used in wind energy generation systems due to its cost-effective, partially rated back-to-back power converters, variable rotor speed operation, and maximum wind power capture. The conventional design assumes balanced grid voltage and utilizes power protection for the power converters. The DFIG wind turbine is naturally one of the major components in distributed generations of the smart grid system. However, newly developed smart grid system is rich in unbalanced loads. This paper summarizes the limiter settings of controllers and explores the nonlinear behaviors of the DFIG-based wind power generation system with unbalanced loads. The generator rotor speed and an unbalanced load resistance are chosen as variation parameters. An emerging low-frequency linear-modulated oscillation at line second harmonic frequency with DC drifting is identified on the DC link voltage of the back-to-back power converters. In terms of second harmonic and the usually reported hazardous low-frequency oscillation, the saturation nonlinearity and over-modulation of the back-to-back power converter and its power flow are investigated and analyzed. The built-in detailed model of the DFIG wind energy generation system in MATLAB with SimPowerSystems library is used in this study. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:双馈感应发电机(DFIG)由于具有成本效益,部分额定的背靠背功率转换器,可变转子速度运行以及最大的风能捕获能力而被广泛用于风能发电系统中。常规设计采用平衡的电网电压,并为功率转换器使用功率保护。 DFIG风力发电机自然是分布式智能电网系统中的主要组件之一。但是,新开发的智能电网系统负载不平衡。本文总结了控制器的限制器设置,并探讨了基于DFIG的具有不平衡负载的风力发电系统的非线性行为。选择发电机转子速度和不平衡负载电阻作为变化参数。在背靠背功率转换器的直流母线电压上,可以识别出出现线性二次谐波的线性调频振荡,带有直流漂移。根据二次谐波和通常报告的危险低频振荡,对背对背功率转换器及其功率流的饱和非线性和过调制进行了研究和分析。本研究使用带有SimPowerSystems库的MATLAB中DFIG风力发电系统的内置详细模型。版权所有(C)2015 John Wiley&Sons,Ltd.

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