Title :
Adaptive fuzzy attitude tracking control of spacecraft with input magnitude and rate constraints
Author :
Xiaoping, Shi ; Guoping, Yuan ; Long, Li
Author_Institution :
Control & Simulation Center, Harbin Inst. of Technol., Harbin, China
Abstract :
A new adaptive feedback controller for attitude tracking of uncertain spacecraft is developed, based on the dynamic inversion theory and fuzzy logic technology. The objective is to control the spacecraft subject to parametric uncertainties, external disturbances, and control input constraints so that its attitude follows a prescribed path. First, a controller which consists of the dynamic inversion algorithm and a linear control law is designed for the nominal spacecraft. Then, the fuzzy logic system is added to approximate the unknown parametric uncertainties. To deal with the effect of input constraints, an auxiliary block is used to adjust the control strategy to ensure the system stability and performance. Furthermore, the robust feedback is applied to attenuate the effect of external disturbances. The stability and performance is guaranteed by Lyapunov analysis. Numerical examples show that the whole system, using the proposed control law, has good performance and robustness to uncertainties, even when the inputs are in saturation.
Keywords :
Lyapunov methods; adaptive control; attitude control; feedback; fuzzy control; robust control; space vehicles; tracking; uncertain systems; Lyapunov analysis; adaptive feedback controller; adaptive fuzzy attitude tracking control; auxiliary block; control input magnitude constraints; dynamic inversion theory; external disturbance effect attenuation; fuzzy logic system; fuzzy logic technology; linear control law; nominal spacecraft; rate constraints; robust feedback; system performance; system stability; uncertain spacecraft; unknown parametric uncertainties; Actuators; Adaptive control; Attitude control; Mathematical model; Space vehicles; Uncertainty; Adaptive control; Attitude tracking; Fuzzy logic; Input saturation; Nonlinear systems;
Conference_Titel :
Control Conference (CCC), 2012 31st Chinese
Conference_Location :
Hefei
Print_ISBN :
978-1-4673-2581-3