DocumentCode :
24337
Title :
Adaptive Control of a Variable-Speed Variable-Pitch Wind Turbine Using Radial-Basis Function Neural Network
Author :
Jafarnejadsani, Hamidreza ; Pieper, Jeff ; Ehlers, Julian
Author_Institution :
Dept. of Mech. Eng., Univ. of Calgary, Calgary, AB, Canada
Volume :
21
Issue :
6
fYear :
2013
fDate :
Nov. 2013
Firstpage :
2264
Lastpage :
2272
Abstract :
In order to be economically competitive, various control systems are used in large scale wind turbines. These systems enable the wind turbine to work efficiently and produce the maximum power output at varying wind speed. In this paper, an adaptive control based on radial-basis-function neural network (NN) is proposed for different operation modes of variable-speed variable-pitch wind turbines including torque control at speeds lower than rated wind speeds, pitch control at higher wind speeds and smooth transition between these two modes The adaptive NN control approximates the nonlinear dynamics of the wind turbine based on input/output measurements and ensures smooth tracking of the optimal tip-speed-ratio at different wind speeds. The robust NN weight updating rules are obtained using Lyapunov stability analysis. The proposed control algorithm is first tested with a simplified mathematical model of a wind turbine, and then the validity of results is verified by simulation studies on a 5 MW wind turbine simulator.
Keywords :
Lyapunov methods; adaptive control; approximation theory; neurocontrollers; nonlinear control systems; radial basis function networks; robust control; torque control; wind turbines; Lyapunov stability analysis; adaptive NN control; control systems; input-output measurements; large-scale wind turbines; mathematical model; maximum power output; nonlinear dynamics approximation; operation modes; optimal tip-speed-ratio; pitch control; radial-basis function neural network; radial-basis-function NN; robust NN weight updating rules; torque control; variable-speed variable-pitch wind turbine; varying wind speed; Adaptive control; Radial basis function networks; Torque control; Wind speed; Wind turbines; Adaptive control; generator torque control; pitch control; radial-basis function (RBF) neural network (NN); transition mode of operation; variable-speed variable-pitchwind turbine; varying wind speed;
fLanguage :
English
Journal_Title :
Control Systems Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6536
Type :
jour
DOI :
10.1109/TCST.2012.2237518
Filename :
6418007
Link To Document :
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