Title :
Distributed finite-time attitude tracking control for modular spacecraft systems
Author :
Zhang Hai-bo ; Wang Da-yi ; Wei Chun-ling
Author_Institution :
Beijing Inst. of Control & Eng., Beijing, China
Abstract :
This paper addresses the distributed finite-time attitude tracking control problem for modular spacecraft systems under a directed communication topology. a distributed continuous finite-time estimator for the each following spacecraft is designed to estimate the leader spacecraft angular velocity in the case that the leader spacecraft reference state may only be available to a part of the following spacecraft. Furthermore, based on the fast terminal sliding mode contained the state of neighboring spacecraft, we propose and a model-independent distributed finite-time adaptive tracking control algorithm to deal with modeling uncertainties and external disturbances. The effectiveness of the results is also illustrated by numerical simulations.
Keywords :
adaptive control; angular velocity control; attitude control; continuous time systems; distributed control; space vehicles; state estimation; uncertain systems; variable structure systems; directed communication topology; distributed continuous finite-time estimator; distributed finite-time attitude tracking control; external disturbance; leader spacecraft angular velocity estimation; leader spacecraft reference state estimation; model independent distributed finite time adaptive tracking control algorithm; modeling uncertainties; modular spacecraft system; terminal sliding mode; Adaptation models; Attitude control; Laboratories; Laplace equations; Numerical models; Space technology; Space vehicles; Attitude Tracking; Distributed Control; Finite-time; Modular Spacecraft Systems;
Conference_Titel :
Control Conference (CCC), 2014 33rd Chinese
Conference_Location :
Nanjing
DOI :
10.1109/ChiCC.2014.6896884