DocumentCode
73452
Title
Fuzzy Control With Randomly Occurring Infinite Distributed Delays and Channel Fadings
Author
Sunjie Zhang ; Zidong Wang ; Derui Ding ; Huisheng Shu
Author_Institution
Sch. of Inf. Sci. & Technol., Donghua Univ., Shanghai, China
Volume
22
Issue
1
fYear
2014
fDate
Feb. 2014
Firstpage
189
Lastpage
200
Abstract
In this paper, the H∞ output-feedback control problem is investigated for a class of discrete-time fuzzy systems with randomly occurring infinite distributed delays and channel fadings. A random variable obeying the Bernoulli distribution is introduced to account for the probabilistic infinite distributed delays. The stochastic Rice fading model is employed to simultaneously describe the phenomena of random time delays and channel fadings via setting different values of the channel coefficients. The aim of this paper is to design an H∞ output-feedback fuzzy controller such that the closed-loop Takagi-Sugeno (T-S) fuzzy control system is exponentially mean-square stable, and the disturbance rejection attenuation is constrained to a given level by means of the H∞ performance index. Intensive analysis is carried out to obtain sufficient conditions for the existence of desired output-feedback controllers, ensuring both the exponential mean-square stability and the prescribed H∞ performance. The cone-complementarity linearization algorithm is utilized to cast the controller design problem into a sequential minimization: one that is solvable by the semi-definite programming method. A simulation result is exploited to illustrate the usefulness and effectiveness of the proposed design technique.
Keywords
H∞ control; asymptotic stability; closed loop systems; delay systems; discrete time systems; fading channels; feedback; fuzzy control; least mean squares methods; mathematical programming; minimisation; probability; random processes; stochastic processes; Bernoulli distribution; H∞ fuzzy control; H∞ output-feedback control problem; H∞ performance index; T-S fuzzy control; channel fadings; closed-loop Takagi-Sugeno control; cone-complementarity linearization algorithm; discrete-time fuzzy system; disturbance rejection attenuation; exponential mean-square stability; intensive analysis; output-feedback controller; probabilistic infinite distributed delay; random time delay; random variable; semidefinite programming; sequential minimization; stochastic Rice fading model; Delays; Fading; Fuzzy control; Stability analysis; Stochastic processes; Symmetric matrices; $H_infty$ control; Channel fadings; discrete-time systems; fuzzy control; randomly occurring infinite distributed delays;
fLanguage
English
Journal_Title
Fuzzy Systems, IEEE Transactions on
Publisher
ieee
ISSN
1063-6706
Type
jour
DOI
10.1109/TFUZZ.2013.2249587
Filename
6471804
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