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Event-triggered attitude control for flying robots using an event approach based on the control

J. Fermi Guerrero‐Castellanos, Nicolas Marchand, Sylvain Durand, A. Vega-Alonzo, J. J. Téllez-Guzmán

Year
2015
Citations
6

Abstract

This paper presents the development of a quaternion-based nonlinear event-triggered control for the attitude stabilization of Flying robots. Firstly, it is proved the existence of a Control Lyapunov Function. Unlike some previously proposed schemes, the aim of this paper is to propose a new and simpler event function. The control law ensures the asymptotic stability of the closed-loop system to the desired attitude. The approach is validated in real-time using a quadrotor mini-helicopter. The experiments show that the event driven controller reduces the control update without deteriorating the closed-loop system performance.

Keywords

QuaternionControl theory (sociology)Attitude controlLyapunov functionController (irrigation)Event (particle physics)Computer scienceControl (management)Exponential stabilityStability (learning theory)

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