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Model reference adaptive back-EMF estimations for sensorless control of grid-connected doubly-fed induction generators

机译:模型参考自适应反电动势估计,用于并网双馈感应发电机的无传感器控制

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摘要

A back-EMF model reference adaptive system (MRAS)-based sensorless control scheme is proposed for a grid-connected doubly-fed induction generator (DFIG). Based on the stator-side and the rotor-side dynamic models of the DFIG, both the reference model and the adaptive model of the proposed back-EMF-based DFIG are investigated. The adaptation mechanism of the proposed controller and the stability of the closed-loop system are derived by Popov's criterion. Real-time simulation studies are performed with detailed dynamics including PWM synthesis. A 2.2 kW DFIG experimental platform is constructed to validate the proposed method by hardware experiments. Both results indicate that proper speed estimations can be achieved by the proposed method and will not be affected by small variations either in the rotor speed or in the output power of the DFIG.
机译:针对并网双馈感应发电机(DFIG),提出了一种基于反电动势模型参考自适应系统(MRAS)的无传感器控制方案。基于DFIG的定子侧和转子侧动态模型,研究了所提出的基于反电动势的DFIG的参考模型和自适应模型。提出的控制器的自适应机制和闭环系统的稳定性是根据Popov准则得出的。实时仿真研究使用包括PWM合成在内的详细动态信息进行。构建了一个2.2 kW的DFIG实验平台,以通过硬件实验验证该方法的有效性。这两个结果都表明,通过所提出的方法可以实现正确的速度估计,并且不受转子速度或DFIG输出功率的微小变化影响。

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