Title :
Nonlinear flight control design using sliding mode disturbance observer-based constraint backstepping
Author :
Zhang, Chao ; Chen, Zongji ; Wei, Chen
Author_Institution :
Sch. of Autom. Sci. & Electr. Eng., Beijing Univ. of Aeronaut. & Astronaut., Beijing, China
Abstract :
This paper presents a sliding mode disturbance observer-based constraint backstepping control approach (CBS/SMDO) to control a cargo aircraft during heavy cargo airdrop operation. The CBS/SMDO controller is capable of dealing with parametric uncertainties, external disturbances, and unmodeled dynamics in the presence of state/control constraints. The super-twisting second order sliding mode disturbance observer (SOSMDO) is utilized to compensate for the overall uncertainties, avoiding high control gains. The SOSMDO is much simpler than the neural networks-based estimator and could provide asymptotic convergence of the estimation error to zero in finite time. The closed-loop stability is guaranteed in the sense of Lyapunov. The proposed CBS/SMDO controller is applied to the airdrop flight control design on a nonlinear six-degrees-of-freedom transport aircraft model in a low attitude tandem extraction airdrop scenario. Simulation results demonstrate the feasibility of the CBS/SMDO method.
Keywords :
Lyapunov methods; aircraft control; closed loop systems; control system synthesis; neurocontrollers; nonlinear control systems; observers; stability; variable structure systems; Lyapunov; airdrop flight control design; cargo aircraft control; closed loop stability; estimation error; heavy cargo airdrop operation; low attitude tandem extraction airdrop scenario; neural networks based estimator; nonlinear flight control design; sliding mode disturbance observer based constraint backstepping control; state/control constraints; super twisting second order sliding mode disturbance observer; transport aircraft model; Aerospace control; Aircraft; Atmospheric modeling; Backstepping; Equations; Mathematical model; Uncertainty; constraint backstepping; flight control; heavy cargo airdrop; sliding mode disturbance observer;
Conference_Titel :
Intelligent Control and Automation (WCICA), 2012 10th World Congress on
Conference_Location :
Beijing
Print_ISBN :
978-1-4673-1397-1
DOI :
10.1109/WCICA.2012.6358172