Title :
New Criteria of Passivity Analysis for Fuzzy Time-Delay Systems With Parameter Uncertainties
Author :
Shiping Wen ; Zhigang Zeng ; Tingwen Huang ; Xinghuo Yu ; Mingqing Xiao
Author_Institution :
Sch. of Autom., Huazhong Univ. of Sci. & Technol., Wuhan, China
Abstract :
This paper investigates the passivity problem for a class of uncertain stochastic fuzzy nonlinear systems with mixed delays and nonlinear noise disturbances by employing an improved free-weighting matrix approach. The fuzzy system is based on the Takagi-Sugeno model that is often used to represent the complex nonlinear systems in terms of fuzzy sets and fuzzy reasoning. To reflect more realistic dynamical behaviors of the system, the parameter uncertainties, the stochastic disturbances, and nonlinearities are considered, where the parameter uncertainties enter into all the system matrices, the stochastic disturbances are given in the form of a Brownian motion. The mixed delays comprise both discrete and distributed time-varying delays. By taking the relationship among the time delays, their lower and upper bounds into account, some less conservative linear-matrix-inequality-based delay-dependent passivity criteria are obtained without ignoring any useful terms in the derivative of Lyapunov functional. Finally, numerical examples are given to demonstrate the effectiveness and merits of the proposed methods.
Keywords :
Brownian motion; delays; discrete time systems; fuzzy control; fuzzy set theory; linear matrix inequalities; nonlinear systems; stochastic systems; uncertain systems; Brownian motion; Lyapunov functional; Takagi-Sugeno model; discrete time-varying delay; distributed time-varying delay; free-weighting matrix approach; fuzzy reasoning; fuzzy set; fuzzy time-delay system; linear-matrix-inequality; nonlinear noise disturbance; parameter uncertainty; passivity analysis; uncertain stochastic fuzzy nonlinear system; Bismuth; Delays; Fuzzy systems; Nonlinear systems; Stochastic processes; Stochastic systems; Uncertain systems; Mixed delay; Passivity; mixed delay; noise disturbance; passivity; time delay;
Journal_Title :
Fuzzy Systems, IEEE Transactions on
DOI :
10.1109/TFUZZ.2015.2417913