Title :
Stability analysis and synthesis for an affine fuzzy control system via LMI and ILMI: a continuous case
Author :
Kim, Euntai ; Kim, Seungwoo
Author_Institution :
Dept. of Electr. & Electron. Eng., Yonsei Univ., Seoul, South Korea
fDate :
6/1/2002 12:00:00 AM
Abstract :
A new stability analysis and controller synthesis methodology for a continuous affine fuzzy system is proposed in this paper. The method suggested is based on the numerical convex optimization techniques. In analysis, the stability condition under which the affine fuzzy system is quadratically stable is derived and is recast in the formulation of linear matrix inequalities (LMIs). The emphasis of this paper, however, is on the synthesis of fuzzy controller based on the derived stability condition. In the synthesis, the stabilizability condition turns out to be in the formulation of bilinear matrix inequalities and is solved numerically in an iterative manner. Fuzzy local controllers also assume the affine form and their bias terms are solved in a numerical manner simultaneously together with the gains. Continuous iterative LMI (ILMI) approach is presented to obtain a feasible solution for the synthesis of the affine fuzzy system
Keywords :
closed loop systems; continuous time systems; control system synthesis; fuzzy control; iterative methods; matrix algebra; stability; affine fuzzy system; bilinear matrix inequality; closed-loop system; continuous system; controller synthesis; fuzzy control; iterative linear matrix inequality; quadratic stability; stabilizability; Content addressable storage; Control system synthesis; Fuzzy control; Fuzzy sets; Fuzzy systems; Iterative methods; Linear matrix inequalities; Open loop systems; Optimization methods; Stability analysis;
Journal_Title :
Fuzzy Systems, IEEE Transactions on
DOI :
10.1109/TFUZZ.2002.1006442