DocumentCode :
1751622
Title :
State-dependent scaling approach to global control of interconnected nonlinear dynamic systems
Author :
Ito, Hiroshi
Author_Institution :
Dept. of Control Eng. & Sci., Kyushu Inst. of Technol., Fukuoka, Japan
Volume :
5
fYear :
2001
fDate :
2001
Firstpage :
3654
Abstract :
This paper presents a novel approach to the problem of global stabilization with L2 disturbance attenuation for a class of interconnected nonlinear systems. An innovative generalization of state-dependent scaling is newly accomplished, which allows one to deal with interconnection of nonlinear-gain bounded dynamic systems which unnecessarily have finite linear-gain. The effect of the disturbance on the controlled output can be attenuated to an arbitrarily small level with global asymptotic stability by partial-state feedback control if the nonlinear system is an interconnection of a strict-feedback system and a uncertain time-varying dynamics of unmeasurable state variables. The procedure of designing such partial-state feedback controllers is described in the form of recursive selection of state-dependent scaling functions. The state-dependent scaling approach offers flexibility to render the nonlinear controller identical with robust linear ℋ control at the equilibrium
Keywords :
H control; asymptotic stability; interconnected systems; nonlinear dynamical systems; robust control; state feedback; uncertain systems; H control; asymptotic stability; global stabilization; interconnected systems; nonlinear dynamical systems; state feedback; uncertain systems; Adaptive control; Asymptotic stability; Attenuation; Control systems; Feedback control; Nonlinear control systems; Nonlinear dynamical systems; Nonlinear systems; Robust control; Time varying systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 2001. Proceedings of the 2001
Conference_Location :
Arlington, VA
ISSN :
0743-1619
Print_ISBN :
0-7803-6495-3
Type :
conf
DOI :
10.1109/ACC.2001.946202
Filename :
946202
Link To Document :
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