2007 · 36 citations · 5 references
Motion ControlProportional Controller DesignFlight Control SystemsFeedback CompensatorAerial RoboticsBrushless Hobby MotorAerospace EngineeringEngineeringAir Vehicle SystemMechanical SystemsSystems EngineeringRotor DynamicFlying RobotRoboticsSystem IdentificationFlight ControlControl Engineering
Fast thrust changes are important for authoritive control of VTOL micro air vehicles. Fixed-pitch rotors that alter thrust by varying rotor speed require high-bandwidth control systems to provide adequate performace. We develop a feedback compensator for a brushless hobby motor driving a custom rotor suitable for UAVs. The system plant is identified using step excitation experiments. The aerodynamic operating conditions of these rotors are unusual and so experiments are performed to characterise expected load disturbances. The plant and load models lead to a proportional controller design capable of significantly decreasing rise-time and propagation of disturbances, subject to bus voltage constraints.
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Design of a four-rotor aerial robot
Paul Pounds, Robert Mahony, P. Hynes et al. · QUT ePrints (Queensland University of Technology) · 2002 · 203 citations · Full text
Towards Dynamically-Favourable Quad-Rotor Aerial Robots
Paul Pounds, Robert Mahony, Joel Gresham et al. · QUT ePrints (Queensland University of Technology) · 2004 · 119 citations · Full text
Foundations of Electrical Engineering
P. Hammond · Electronics and Power · 1964 · 27 citations
Electrical Engineering, Engineering, Electrical Transmission +4
Small-scale Aeroelastic Rotor Simulation, Design and Fabrication
Paul Pounds, Robert Mahony · 2005 · 21 citations