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Conference paper

Observer Backstepping Control for Variable Speed Wind Turbine

From

Department of Electrical Engineering, Technical University of Denmark1

Automation and Control, Department of Electrical Engineering, Technical University of Denmark2

This paper presents an observer backstepping controller as feasible solution to variable speed control of wind turbines to maximize wind power capture when operating between cut-in and rated wind speeds. The wind turbine is modeled as a two-mass drive-train system controlled by the generator torque.

The nonlinear controller aims at regulating the generator torque such that an optimal tip-speed ratio can be obtained. Simply relying on the measured rotor angular velocity the proposed observer backstepping controller guarantees global asymptotic tracking of the desired trajectory while maintaining a globally uniformly ultimately bounded torsional angle.

The proposed controller shows convincing performance when simulated in closed loop within a stochastic environment.

Language: English
Publisher: IEEE
Year: 2013
Pages: 1036-1043
Proceedings: 2013 American Control Conference
ISBN: 1479901776 , 9781479901777 , 147990175X , 1479901784 , 9781479901753 and 9781479901784
ISSN: 23785861 and 07431619
Types: Conference paper
DOI: 10.1109/ACC.2013.6579973
ORCIDs: Galeazzi, Roberto and Blanke, Mogens

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