Title :
Robust
Fuzzy Output-Feedback Control With Multiple Probabilistic Delays and Multiple Missing Measurements
Author :
Dong, Hongli ; Wang, Zidong ; Ho, Daniel W C ; Gao, Huijun
Author_Institution :
Space Control & Inertial Technol. Res. Center, Harbin Inst. of Technol., Harbin, China
Abstract :
In this paper, the robust H∞-control problem is investigated for a class of uncertain discrete-time fuzzy systems with both multiple probabilistic delays and multiple missing measurements. A sequence of random variables, all of which are mutually independent but obey the Bernoulli distribution, is introduced to account for the probabilistic communication delays. The measurement-missing phenomenon occurs in a random way. The missing probability for each sensor satisfies a certain probabilistic distribution in the interval. Here, the attention is focused on the analysis and design of H∞ fuzzy output-feedback controllers such that the closed-loop Takagi-Sugeno (T-S) fuzzy-control system is exponentially stable in the mean square. 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 admissible output feedback controllers, which ensures the exponential stability as well as the prescribed H∞ performance. The cone-complementarity-linearization procedure is employed to cast the controller-design problem into a sequential minimization one that is solved by the semi-definite program method. Simulation results are utilized to demonstrate the effectiveness of the proposed design technique in this paper.
Keywords :
H∞ control; asymptotic stability; closed loop systems; control system synthesis; discrete time systems; feedback; fuzzy control; linearisation techniques; mean square error methods; minimisation; performance index; random processes; robust control; statistical distributions; uncertain systems; Bernoulli distribution; H∞ performance; H∞-performance index; closed-loop Takagi-Sugeno fuzzy-control; cone-complementarity-linearization procedure; controller design; disturbance-rejection attenuation; exponential stability; mean square; measurement-missing phenomenon; missing probability; multiple missing measurements; probabilistic communication delay; probabilistic distribution; random variable; robust H∞ fuzzy output-feedback control; semidefinite program; sequential minimization; uncertain discrete-time fuzzy system; Discrete-time fuzzy systems; fuzzy control; multiple missing measurements; multiple probabilistic time delays; networked-control systems (NCSs); robust $H_{infty }$ control; stochastic systems;
Journal_Title :
Fuzzy Systems, IEEE Transactions on
DOI :
10.1109/TFUZZ.2010.2047648