Title :
Multi-objective optimization torque control of wind turbine based on LQG optimal control
Author :
Wang Xiaodong ; Hou Shixu ; Wang Shirong ; Liu Yingming ; Li Lixia
Author_Institution :
Wind Energy Inst., Shenyang Univ. of Technol., Shenyang, China
Abstract :
Considering power quality and drive train load, a kind of linear quadratic Guassian optimal control strategy based on Kalman filter is proposed in this thesis, in order to reduce gearbox fatigue load while improving output power quality of wind turbines. With this optimization strategy, system noise and measurement noise are estimated through Kalman filter, adjusting dynamic optimal gain according to the system of estimation, in order to achieve optimal control of different working point. A 3MW doubly-fed wind turbines is taken as the control object in the simulation,the results indicate that, compared with the conventional pitch control strategy, the proposed pitch controller not only reduced the fluctuation of power but also reduced the torque ripple of gearbox, the fatigue load of gearbox and other key component in drive train were mitigated.
Keywords :
Kalman filters; drives; fatigue; gears; linear quadratic control; optimal control; optimisation; power transmission (mechanical); torque control; wind turbines; Kalman filter; LQG optimal control strategy; doubly-fed wind turbines; drive train load; dynamic optimal gain; gearbox fatigue load reduction; linear quadratic Guassian optimal control strategy; measurement noise; multiobjective optimization torque control; optimization strategy; output power quality; pitch controller; power 3 MW; power fluctuation reduction; power quality; system noise; torque ripple; Aerodynamics; Kalman filters; Mathematical model; Optimal control; Symmetric matrices; Torque; Wind turbines; Dynamic load; LQG controller; Optimal control; Wind turbines;
Conference_Titel :
Control and Decision Conference (CCDC), 2013 25th Chinese
Conference_Location :
Guiyang
Print_ISBN :
978-1-4673-5533-9
DOI :
10.1109/CCDC.2013.6560957