Title :
CLF-based control design with good transient performance for known and unknown multi-input nonlinear systems
Author :
Kosmatopoulos, Elias B.
Author_Institution :
Dept. of Production & Manage. Eng., Tech. Univ. of Crete, Chania, Greece
Abstract :
This paper tackles the problem of constructing semi-global state-feedback stabilizers that guarantee good transient closed-loop performance when applied to general nonlinear multi-input state-feedback stabilizable systems whose vector-fields are either known or totally unknown. In the case where the system vector-fields are known, a convex optimization design is proposed (which is based on the work of by Prajna et al. [6]) that provides an efficient semi-global state-feedback design for arbitrary smooth state-feedback stabilizable systems. In the case of systems with unknown vector-fields the aforementioned convex optimization design is appropriately combined with the adaptive Control Lyapunov Function (CLF)-based control scheme recently proposed by the author [5]. The resulting adaptive scheme guarantees arbitrarily good closed-loop transient performance outside the regions where the system is uncontrollable, provided the controlled system is state-feedback stabilizable and, moreover, it admits a controllability-like property.
Keywords :
Lyapunov methods; adaptive control; closed loop systems; control system synthesis; controllability; convex programming; nonlinear control systems; stability; state feedback; vectors; CLF-based control design; adaptive control Lyapunov function; arbitrary smooth stabilizable systems; controllability-like property; convex optimization design; general nonlinear systems; known multi-input systems; semiglobal state-feedback stabilizers; transient closed-loop performance; unknown multi-input systems; vector-fields; Closed loop systems; Control design; Europe; Nonlinear systems; Symmetric matrices; Transient analysis; Vectors;
Conference_Titel :
Control Conference (ECC), 2009 European
Conference_Location :
Budapest
Print_ISBN :
978-3-9524173-9-3