Publication | Closed Access
Dead reckoning and Kalman filter design for trajectory tracking of a quadrotor UAV
23
Citations
6
References
2010
Year
Unknown Venue
Online WaypointsDead ReckoningDynamic EquationsAerial RoboticsEngineeringAerospace EngineeringDiscrete Kalman FilterUnmanned SystemField RoboticsSystems EngineeringFlying RobotKinematicsUnmanned VehicleAir Vehicle SystemQuadrotor UavTrajectory TrackingUnmanned Aerial Vehicles
The dynamic equations of a quadrotor unmanned aerial vehicle (UAV), namely Qball-X4, are analyzed and built, trajectory tracking control design based on an inner/outer loop control structure is proposed in this paper. The method of analytic geometry is used in dead-reckoning, discrete Kalman filter has been applied to trajectory tracking for improving the accuracy of estimated location. Integrated online waypoints pre-planning and trajectory tracking control have been carried out. Simulation results demonstrate the effectiveness of the proposed approach.
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