Title :
Residual vibration suppression of flexible spacecraft via optimal arbitrary time-delay filter combined with adaptive controller
Author :
Ma, Jing ; Chu, Zhongyi
Author_Institution :
Sch. of Instrum. & Opto-Electron., Beijing Univ., Beijing, China
Abstract :
The residual vibration is especially harmful for attitude control accuracy and stability of flexible spacecraft in the presence of dynamic uncertainty. In order to solve this problem, a scheme combined Optimal Arbitrary Time-delay Filter (OATF) with adaptive output feedback controller is investigated. The OATF which convolves the desired reference input with a sequence of impulses and produces a vibration-free output. The robustness of such an algorithm with respect to model parametric uncertainties can be improved by the output feedback control, while for the feedback loop, the adaptive controller is employed to counteract the internal uncertainties and external disturbances. The proposed scheme which is verified can reduce the residual vibration and adapt the variations of the model parameter through numerical simulations.
Keywords :
adaptive control; attitude control; delay filters; feedback; mechanical stability; optimal control; robust control; space vehicles; vibration control; OATF; adaptive controller; attitude control; dynamic uncertainty; flexible spacecraft; optimal arbitrary time-delay filter; output feedback; residual vibration suppression; robustness; stability; Adaptation models; Attitude control; Equations; Mathematical model; Space vehicles; Uncertainty; Vibrations; adaptive control; attitude control; input shaping; vibration suppression;
Conference_Titel :
Computer Science and Automation Engineering (CSAE), 2011 IEEE International Conference on
Conference_Location :
Shanghai
Print_ISBN :
978-1-4244-8727-1
DOI :
10.1109/CSAE.2011.5952761