Title :
Fuzzy Control Design for Nonlinear ODE-Hyperbolic PDE-Cascaded Systems: A Fuzzy and Entropy-Like Lyapunov Function Approach
Author :
Jun-Wei Wang ; Huai-Ning Wu ; Han-Xiong Li
Author_Institution :
Sch. of Autom. & Electr. Eng., Univ. of Sci. & Technol. Beijing, Beijing, China
Abstract :
This paper addresses the problem of fuzzy control design for a class of nonlinear distributed parameter systems represented by a cascaded model consisting of a Takagi-Sugeno (T-S) fuzzy ordinary differential equation and a linear first-order hyperbolic partial differential equation (PDE), where the control input affects the entire system through a boundary condition of the PDE. This characteristic makes the PDE subject to an inhomogeneous boundary condition. A state transformation is introduced to make the inhomogeneous boundary condition homogeneous, and a composite Lyapunov function that involves a fuzzy Lyapunov function and an entropy-like Lyapunov function is constructed for the transformed system. Based on this composite Lyapunov function, a sufficient condition for the closed-loop exponential stability of the cascaded system is presented in terms of a set of algebraic linear matrix inequalities in space. Using the sector bound approach and the finite spatial domain, a linear matrix inequality-based fuzzy control design procedure is developed from the obtained stability analysis result. Finally, simulation results on two numerical examples are provided to illustrate the effectiveness and merit of the proposed design method.
Keywords :
Lyapunov methods; asymptotic stability; cascade systems; closed loop systems; control system synthesis; distributed parameter systems; fuzzy control; linear matrix inequalities; nonlinear control systems; partial differential equations; PDE; Takagi-Sugeno fuzzy ordinary differential equation; closed-loop exponential stability; composite Lyapunov function; entropy-like Lyapunov function approach; finite spatial domain; fuzzy Lyapunov function; fuzzy control design; inhomogeneous boundary condition; linear first-order hyperbolic partial differential equation; linear matrix inequality-based fuzzy control design procedure; nonlinear ODE-hyperbolic PDE-cascaded systems; nonlinear distributed parameter systems; sector bound approach; Boundary conditions; Control theory; Educational institutions; Fuzzy control; Lyapunov methods; Mathematical model; Nonhomogeneous media; Cascaded systems; entropy-like Lyapunov function; exponential stability; fuzzy Lyapunov function; fuzzy control;
Journal_Title :
Fuzzy Systems, IEEE Transactions on
DOI :
10.1109/TFUZZ.2013.2291569