DocumentCode
3782754
Title
Recursive state-dependent scaling design of robust output feedback control for global stabilization
Author
H. Ito;M. Krstic
Author_Institution
Dept. of Control Eng. & Sci., Kyushu Inst. of Technol., Fukuoka, Japan
Volume
1
fYear
1999
Firstpage
848
Abstract
A state-dependent scaling approach to robust backstepping is proposed for global robust stabilization of nonlinear systems via output feedback. The design procedure handles output-feedback stabilization of strict-feedback systems with various kinds of uncertainty structures in a unified way. The backstepping is ready for numerical computation. The paper shows a condition of allowable uncertainty size under which an uncertain system is globally robustly stabilized by output feedback. A special class of systems is shown to be always globally stabilizable for arbitrarily large nonlinear size of uncertainties. The design procedure is developed by using the Schur complements instead of Young´s inequality. A recursive procedure of robust observer design is proposed.
Keywords
"Robust control","Output feedback","Robustness","Backstepping","Uncertainty","Nonlinear systems","Uncertain systems","State feedback","Control engineering","Aerospace engineering"
Publisher
ieee
Conference_Titel
Decision and Control, 1999. Proceedings of the 38th IEEE Conference on
ISSN
0191-2216
Print_ISBN
0-7803-5250-5
Type
conf
DOI
10.1109/CDC.1999.832896
Filename
832896
Link To Document