DocumentCode :
3526222
Title :
LIDAR-assisted preview controllers design for a MW-scale commercial wind turbine model
Author :
Na Wang ; Johnson, Kathryn E. ; Wright, Alan D. ; Carcangiu, Carlo E.
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., Colorado Sch. of Mines, Golden, CO, USA
fYear :
2013
fDate :
10-13 Dec. 2013
Firstpage :
1678
Lastpage :
1683
Abstract :
Existing commercial wind turbine control algorithms are typically feedback only. Nacelle-based commercial light detection and ranging (LIDAR) systems, which can detect preview wind information in front of the turbine to be used in feedforward controller design, can improve wind turbine control performance compared to a baseline standard proportional-integral (PI) feedback controller. Combined feedforward and feedback collective pitch control strategies are investigated in this research for both mitigating tower fore-aft fatigue load above rated wind speed and enhancing power capture below rated wind speed. When the wind speed is above rated, we consider a collective pitch LQ-based preview control scheme that augments the existing feedback controller and uses a Kalman filter in the control loop as the observer. When the wind speed is below rated, we combine a tower foreaft feedback damping pitch controller with a feedforward controller designed through the method of Lagrange multipliers optimization. Control effectiveness verifications are conducted through FAST simulations with multiple turbulent wind cases.
Keywords :
Kalman filters; PI control; control system synthesis; damping; feedback; feedforward; linear quadratic control; optical radar; optimisation; turbulence; wind turbines; FAST simulations; Kalman filter; LIDAR-assisted preview controller design; Lagrange multiplier optimization; MW-scale commercial wind turbine model; Nacelle-based commercial light detection and ranging systems; PI; baseline standard proportional-integral feedback controller; collective pitch LQ-based preview control scheme; commercial wind turbine control algorithms; feedback collective pitch control strategies; feedforward collective pitch control strategies; feedforward controller design; multiple turbulent wind cases; power capture; rated wind speed; tower fore-aft fatigue load; tower fore-aft feedback damping pitch controller; wind information; Feedforward neural networks; Laser radar; Poles and towers; Rotors; Wind speed; Wind turbines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2013 IEEE 52nd Annual Conference on
Conference_Location :
Firenze
ISSN :
0743-1546
Print_ISBN :
978-1-4673-5714-2
Type :
conf
DOI :
10.1109/CDC.2013.6760123
Filename :
6760123
Link To Document :
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