Title :
Moving horizon h∞ control of variable speed wind turbines with actuator saturation
Author :
Miaomiao Ma ; Hong Chen ; Xiangjie Liu ; Allgöwer, Frank
Author_Institution :
Beijing Key Lab. of New Technol. & Syst. on Meas. & Control for Ind. Process, North China Electr. Power Univ., Beijing, China
Abstract :
This study suggests a moving horizon ℋ∞ control scheme for variable speed wind turbines above the rated wind speed to maintain the output power at the rated value for variable operating points. A constrained ℋ∞ control problem is solved at each sampling time with the update of not only the initial condition but also the prediction model based on different operating points. Closed-loop properties inclusive of ℒ2 disturbance attenuation are discussed in the framework of dissipation theory. The moving horizon ℋ∞ control considers the non-linear dynamic aspect of the wind turbine, the turbulent nature of the wind and actuator saturations. Analysis and simulation results for WD34 wind turbine show possible improvements on the output electrical power regulation performance for variable operating points, while respecting actuator saturation limits.
Keywords :
H∞ control; actuators; angular velocity control; closed loop systems; nonlinear dynamical systems; power generation control; wind power plants; wind turbines; L2 disturbance attenuation; actuator saturation limits; closed-loop properties; constrained H∞ control problem; dissipation theory framework; moving horizon H∞ control scheme; nonlinear dynamic aspect; output electrical power regulation performance improvement; variable operating points; variable speed wind turbines;
Journal_Title :
Renewable Power Generation, IET
DOI :
10.1049/iet-rpg.2013.0095