Publication | Closed Access
Data-driven attitude control law design for a variable-pitch quadrotor
21
Citations
14
References
2016
Year
Unknown Venue
Unmanned Aircraft ControlAerospace RoboticsEngineeringAerial RoboticsAerospace SystemsAerospace EngineeringAir Vehicle SystemMechatronicsMechanical SystemsPitch DynamicsFlight OptimizationSystems EngineeringFlying RobotQuadrotor IndoorVariable-pitch Quadrotor UavFlight Control SystemsFlight ControlVariable-pitch Quadrotor
In this paper, the problem of tuning a cascade attitude control system of a variable-pitch quadrotor UAV is tackled, adopting a fast data-driven procedure based on a modified Virtual Reference Feedback Tuning (VRFT) approach. The proposed method allows to tune both the inner and the outer loops by means of a single set of experimental data. More precisely, the pitch attitude degree of freedom of the vehicle is considered, operating the quadrotor indoor on a dedicated test bench. The achieved control performance is compared with the one obtained by applying a model-based structured H <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">∞</sub> synthesis approach to a black-box model of the pitch dynamics.
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