Laboratory LTII, University of Bejaia, Algeria.
Laboratory LICOME, University of Quebec at Chicoutimi, Canada.
ISA Trans. 2014 Jan;53(1):76-84. doi: 10.1016/j.isatra.2013.08.004. Epub 2013 Sep 7.
In order to make a wind power generation truly cost-effective and reliable, an advanced control techniques must be used. In this paper, we develop a new control strategy, using nonlinear generalized predictive control (NGPC) approach, for DFIG-based wind turbine. The proposed control law is based on two points: NGPC-based torque-current control loop generating the rotor reference voltage and NGPC-based speed control loop that provides the torque reference. In order to enhance the robustness of the controller, a disturbance observer is designed to estimate the aerodynamic torque which is considered as an unknown perturbation. Finally, a real-time simulation is carried out to illustrate the performance of the proposed controller.
为了使风力发电真正具有成本效益和可靠性,必须采用先进的控制技术。在本文中,我们为基于 DFIG 的风力涡轮机开发了一种新的控制策略,使用非线性广义预测控制 (NGPC) 方法。所提出的控制律基于两点:基于 NGPC 的转矩电流控制环生成转子参考电压和基于 NGPC 的速度控制环,提供转矩参考。为了增强控制器的鲁棒性,设计了一个干扰观测器来估计被视为未知扰动的空气动力转矩。最后,进行了实时仿真以说明所提出的控制器的性能。