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Complementary Sliding Mode Control for Variable Speed Variable Pitch Wind Turbine Based on Feedback Linearization

机译:基于反馈线性化的变速变桨风力机互补滑模控制

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Since the dynamic of the wind turbine is typically nonlinear, the conventional linear pitch control method results in a large deviation of the generator power. To address the aforementioned issue, a variable speed variable pitch control method combining feedback linearization and complementary sliding mode control (FLCSMC) for wind turbine is proposed. The affine nonlinear model of the system is investigated and then globally exactly linearized by means of feedback linearization theory. On this basis, compared with the conventional sliding mode control, the complementary sliding mode control with excellent tracking accuracy is designed to improve the performance of the system. Finally, the proposed controller is validated on the aeroelastic wind turbine using FAST (Fatigue, Aerodynamics, Structures, and Turbulence) simulator. The comparative experimental results demonstrate that the proposed FLCSMC in this paper can decrease the fluctuations of generator power and generator speed effectively and get better stability and robustness.
机译:由于风力涡轮机的动力通常是非线性的,因此常规的线性桨距控制方法导致发电机功率的大偏差。为了解决上述问题,提出了一种将反馈线性化和互补滑模控制(FLCSMC)相结合的变速变桨距控制方法。研究了系统的仿射非线性模型,然后利用反馈线性化理论将其全局精确地线性化。在此基础上,与传统的滑模控制相比,具有优异跟踪精度的互补滑模控制被设计用于改善系统性能。最后,使用FAST(疲劳,空气动力学,结构和湍流)模拟器在气动弹性风力涡轮机上对所提出的控制器进行了验证。对比实验结果表明,本文提出的FLCSMC可以有效降低发电机功率和发电机转速的波动,并具有较好的稳定性和鲁棒性。

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