DocumentCode :
1752819
Title :
Semiglobally ISpS Disturbance Attenuation via Adaptive Neural Design for a Class of Nonlinear Systems
Author :
Zhou, Guopeng ; Su, Weizhou ; Wang, Cong
Author_Institution :
Coll. of Autom. Sci. & Eng., South China Univ. of Technol., Guangzhou
Volume :
1
fYear :
0
fDate :
0-0 0
Firstpage :
2964
Lastpage :
2968
Abstract :
This paper considers the disturbance attenuation problem in certain practical sense for a class of multi-input multi-output nonlinear systems with structure uncertainties which are modelled by unknown smooth function vectors and matrices. The system under consideration is composed of two cascaded subsystems: a zero-input asymptotically stable nonlinear one and a linearizable one which is controllable. The output of the system is a function vector of the states of these two subsystems. To solve disturbance attenuation problem and cope with the unknown function vectors and matrices in the system, an adaptive control scheme based on neural network technique and Lyapunov theory is developed for the nonlinear system. The resultant closed loop system is semiglobally input-to-state practically stable (ISpS) and the responses of the output to the disturbance inputs are attenuated in certain practical sense. Simulation studies are conducted to verify the effectiveness of the scheme
Keywords :
Lyapunov methods; MIMO systems; adaptive control; matrix algebra; neurocontrollers; nonlinear control systems; vectors; Lyapunov theory; adaptive control; adaptive neural design; cascaded subsystems; disturbance attenuation; multiinput multioutput nonlinear systems; semiglobally input-to-state practically stable; smooth function matrices; smooth function vectors; zero-input asymptotically stable nonlinear system; Adaptive control; Adaptive systems; Attenuation; Control systems; Educational institutions; Neural networks; Nonlinear control systems; Nonlinear systems; Programmable control; Uncertainty; Nonlinear systems; adaptive neural network control; disturbance attenuation; input-to-state practically stable;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Intelligent Control and Automation, 2006. WCICA 2006. The Sixth World Congress on
Conference_Location :
Dalian
Print_ISBN :
1-4244-0332-4
Type :
conf
DOI :
10.1109/WCICA.2006.1712909
Filename :
1712909
Link To Document :
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