Title :
Fuzzy regulators and fuzzy observers: relaxed stability conditions and LMI-based designs
Author :
Tanaka, Kazuo ; Ikeda, Takayuki ; Wang, Hua O.
Author_Institution :
Dept. of Mech. & Control Eng., Univ. of Electro-Commun., Tokyo, Japan
fDate :
5/1/1998 12:00:00 AM
Abstract :
This paper presents new relaxed stability conditions and LMI- (linear matrix inequality) based designs for both continuous and discrete fuzzy control systems. They are applied to design problems of fuzzy regulators and fuzzy observers. First, Takagi and Sugeno´s fuzzy models and some stability results are recalled. To design fuzzy regulators and fuzzy observers, nonlinear systems are represented by Takagi-Sugeno´s (TS) fuzzy models. The concept of parallel distributed compensation is employed to design fuzzy regulators and fuzzy observers from the TS fuzzy models. New stability conditions are obtained by relaxing the stability conditions derived in previous papers, LMI-based design procedures for fuzzy regulators and fuzzy observers are constructed using the parallel distributed compensation and the relaxed stability conditions. Other LMI´s with respect to decay rate and constraints on control input and output are also derived and utilized in the design procedures. Design examples for nonlinear systems demonstrate the utility of the relaxed stability conditions and the LMI-based design procedures
Keywords :
compensation; control system synthesis; distributed control; fuzzy control; matrix algebra; nonlinear control systems; observers; robust control; stability criteria; LMI-based designs; continuous fuzzy control systems; discrete fuzzy control systems; fuzzy observers; fuzzy regulators; linear matrix inequality; nonlinear systems; parallel distributed compensation; relaxed stability conditions; Control engineering; Control theory; Design methodology; Feedback; Fuzzy control; Fuzzy systems; Linear matrix inequalities; Nonlinear systems; Regulators; Stability analysis;
Journal_Title :
Fuzzy Systems, IEEE Transactions on