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UDE-based control of variable-speed wind turbine systems

机译:基于UDE的可变速度风力涡轮机系统控制

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摘要

In this paper, the control of a PMSG (permanent magnet synchronous generator)-based variable-speed wind turbine system with a back-to-back converter is considered. The uncertainty and disturbance estimator (UDE)-based control approach is applied to the regulation of the DC-link voltage and the control of the RSC (rotor-side converter) and the GSC (grid-side converter). For the rotor-side controller, the UDE-based vector control is developed for the RSC with PMSG control to facilitate the application of the MPPT (maximum power point tracking) algorithm for the maximum wind energy capture. For the grid-side controller, the UDE-based vector control is developed to control the GSC with the power reference generated by a UDE-based DC-link voltage controller. Compared with the conventional vector control, the UDE-based vector control can achieve reliable current decoupling control with fast response. Moreover, the UDE-based DC-link voltage regulation can achieve stable DC-link voltage under model uncertainties and external disturbances, e.g. wind speed variations. The effectiveness of the proposed UDE-based control approach is demonstrated through extensive simulation studies in the presence of coupled dynamics, model uncertainties and external disturbances under varying wind speeds. The UDE-based control is able to generate more energy, e.g. by 5% for the wind profile tested.
机译:在本文中,考虑了控制具有背对背转换器的PMSG(永磁同步发电机)的基于变速速度风力涡轮机系统。基于不确定性和扰动估计器(UDE)的控制方法应用于DC-LINK电压的调节和RSC(转子侧转换器)和GSC(栅栏侧转换器)的控制。对于转子侧控制器,基于UDE的载体控制被为具有PMSG控制的RSC开发,以便于应用MPPT(最大功率点跟踪)算法的最大风能捕获。对于电网侧控制器,开发了基于UDE的矢量控制以控制GSC,通过基于UDE的DC链路电压控制器产生的功率参考。与传统的矢量控制相比,基于UDE的载体控制可以通过快速响应实现可靠的电流去耦控制。此外,基于UDE的直流 - 链路电压调节可以在模型不确定性和外部干扰下实现稳定的直流电电压,例如,风速变化。通过在不同风速下的耦合动力学,模型不确定性和外部干扰存在下,通过广泛的模拟研究证明了基于UDE的控制方法的有效性。基于UDE的控制能够产生更多能量,例如,在测试的风景图中达到5%。

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