Title :
Analytical Study and Stability Design of a 3-D Fuzzy Logic Controller for Spatially Distributed Dynamic Systems
Author :
Zhang, Xian-Xia ; Li, Han-Xiong ; Li, Shao-Yuan
Author_Institution :
Inst. of Autom., Shanghai Jiao Tong Univ., Shanghai
Abstract :
A novel 3-D fuzzy logic controller (3-D FLC) was presented to control a class of spatially distributed dynamic systems by Li (IEEE Trans. Fuzzy Syst., vol. 15, no. 3, pp. 470-481, Jun. 2007) by utilizing a 3-D fuzzy set and an inference mechanism with 3-D nature for spatial information processing. In this paper, the analytical mathematical model of the 3-D FLC is derived, and the controller structure is explained with the help of the existing conventional control techniques. The graphic analytical method for the traditional two-term FLC can be used for the analytical model derivation. The derived result shows that the 3-D FLC has a global sliding-mode structure over the spatial domain and explains why the 3-D FLC is able to process spatial information more effectively than its traditional counterpart using a few more sensors. Because of its sliding-mode feature, the Lyapunov stability criterion can be developed easily to analyze and design the 3-D FLC. Finally, a catalytic reactor is presented as an example to demonstrate the effectiveness of the 3-D FLC as compared with other controllers.
Keywords :
Lyapunov methods; chemical reactors; distributed control; fuzzy control; fuzzy set theory; inference mechanisms; stability; stability criteria; time-varying systems; variable structure systems; 3D fuzzy logic controller; 3D fuzzy set; Lyapunov stability criterion; catalytic reactor; global sliding-mode structure; graphic analytical method; inference mechanism; sliding-mode feature; spatial information processing; spatially distributed dynamic systems; stability design; 3-D fuzzy set; Analytical model; distributed parameter system; fuzzy logic control (FLC); stability design;
Journal_Title :
Fuzzy Systems, IEEE Transactions on
DOI :
10.1109/TFUZZ.2008.2005934