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Switching model predictive attitude control for a quadrotor helicopter subject to atmospheric disturbances
Authors:Kostas Alexis  George Nikolakopoulos  Anthony Tzes
Affiliation:aElectrical and Computer Engineering Department, University of Patras, Rio 26500, Greece;bComputer Science, Electrical and Space Engineering Department, Lulea University of Technology, Lulea SE-97753, Sweden
Abstract:In this article a switching model predictive attitude controller for an unmanned quadrotor helicopter subject to atmospheric disturbances is presented. The proposed control scheme is computed based on a piecewise affine (PWA) model of the quadrotor's attitude dynamics, where the effects of the atmospheric turbulence are taken into consideration as additive disturbances. The switchings among the PWA models are ruled by the rate of the rotation angles and for each PWA system a corresponding model predictive controller is computed. The suggested algorithm is verified in experimental studies in the execution of sudden maneuvers subject to forcible wind disturbances. The quadrotor rejects the induced wind disturbances while performing accurate attitude tracking.
Keywords:Unmanned quadrotor helicopter  Model predictive control  Switching control  Atmospheric disturbances
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