DocumentCode :
25653
Title :
Constrained adaptive tracking and command shaped vibration control of flexible hypersonic vehicles
Author :
Xiaofeng Su ; Yingmin Jia
Author_Institution :
Dept. of Syst. & Control, Beihang Univ. (BUAA), Beijing, China
Volume :
9
Issue :
12
fYear :
2015
fDate :
8 6 2015
Firstpage :
1857
Lastpage :
1868
Abstract :
This study presents a new approach, which integrates the input shaping technique and the constrained adaptive backstepping control method, for constrained adaptive tracking and elastic vibration control of flexible hypersonic vehicles. Specifically, the input shaper as a feedforward part is implemented outside the feedback loop, which can achieve vibration suppression for flexible dynamics; whereas for the feedback loop, the vehicle model is decomposed into functional subsystems, and the decentralised approach is used. Then, by introducing the command filter and the auxiliary system, constrained adaptive control law is formulated to make the closed-loop system follow the shaped reference trajectory and attenuate the elastic vibration in the presence of parameter uncertainties, external disturbances and input saturation constraints. An attractive feature of this proposed control algorithm is that all signals of closed-loop system are uniformly ultimately bounded and the tracking error converges to a residual set which can be made sufficiently small by properly designing control parameters. Moreover, by applying the shaped commands, flexible dynamics with less elastic deformation and vibration can be achieved without destroying the closed-loop performance. Simulation results are provided to verify the effectiveness of the proposed control method.
Keywords :
adaptive control; aircraft; closed loop systems; control nonlinearities; decentralised control; elastic deformation; feedback; feedforward; vibration control; closed-loop system; command shaped elastic vibration control; constrained adaptive backstepping control method; constrained adaptive tracking; decentralised approach; elastic deformation; feedback loop; feedforward; flexible hypersonic vehicles; input shaping technique; shaped reference trajectory; vibration suppression;
fLanguage :
English
Journal_Title :
Control Theory & Applications, IET
Publisher :
iet
ISSN :
1751-8644
Type :
jour
DOI :
10.1049/iet-cta.2014.0750
Filename :
7166518
Link To Document :
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