Title
Application And Robustness Design Of Fuzzy Controller For Resonant And Chaotic Systems With External Disturbance
Abstract
A robustness design of fuzzy control via model-based approach is proposed in this paper to overcome the effect of approximation error between nonlinear system and Takagi-Sugcno (T-S) fuzzy model. T-S fuzz model is used to model the resonant and chaotic systems and the parallel distributed compensation (PDC) is employed to determine structures of fuzzy controllers. Linear matrix inequality (LMI) based design problems are utilized to find common definite matrices P and feedback gains K satisfying stability conditions derived in terms of Lyapunov direct method. Finally, the effectiveness and the feasibility of the proposed controller design method is demonstrated through numerical simulations on the chaotic and resonant systems
Year
DOI
Venue
2005
10.1142/S0218488505003461
INTERNATIONAL JOURNAL OF UNCERTAINTY FUZZINESS AND KNOWLEDGE-BASED SYSTEMS
Keywords
Field
DocType
resonance, chaos, fuzzy control, T-S fuzzy models, PDC
Control theory,Nonlinear system,Control theory,Fuzzy logic,Robustness (computer science),Fuzzy control system,Chaotic,Mathematics,Linear matrix inequality,Approximation error
Journal
Volume
Issue
ISSN
13
3
0218-4885
Citations 
PageRank 
References 
9
0.60
9
Authors
5
Name
Order
Citations
PageRank
Feng-hsiag Hsiao128318.94
Wei-ling Chiang216611.93
Cheng-Wu Chen31405.25
Sheng-Dong Xu41488.79
Shih-Lin Wu550170.22