Title :
Network-Based Output Tracking Control for a Class of T-S Fuzzy Systems That Can Not Be Stabilized by Nondelayed Output Feedback Controllers
Author :
Dawei Zhang ; Qing-Long Han ; Xinchun Jia
Author_Institution :
Sch. of Math. Sci., Shanxi Univ., Taiyuan, China
Abstract :
This paper investigates network-based output tracking control for a T-S fuzzy system that can not be stabilized by a nondelayed fuzzy static output feedback controller, but can be stabilized by a delayed fuzzy static output feedback controller. By intentionally introducing a communication network that produces proper network-induced delays in the feedback control loop, a stable and satisfactory tracking control can be ensured for the T-S fuzzy system. Due to the presence of network-induced delays, the fuzzy system and the fuzzy tracking controller operate in an asynchronous way. Taking the asynchronous operation and network-induced delays into consideration, the network-based tracking control system is modeled as an asynchronous T-S fuzzy system with an interval time-varying delay. A new delaydependent criterion for L2-gain tracking performance is derived by using the deviation bounds of asynchronous normalized membership functions and a complete Lyapunov-Krasovskii functional. Applying a particle swarm optimization technique with the feasibility of the derived criterion, a novel design algorithm is presented to determine the minimum L2-gain tracking performance and control gains simultaneously. The effectiveness of the proposed method is illustrated by performing network-based output tracking control of a Duffing-Van der Pol´s oscillator.
Keywords :
Lyapunov methods; delays; feedback; fuzzy systems; networked control systems; particle swarm optimisation; relaxation oscillators; stability; Duffing-Van der Pol oscillator; L2-gain tracking; Lyapunov-Krasovskii functional; T-S fuzzy systems; asynchronous normalized membership functions; communication network; delay-dependent criterion; feedback control loop; network-based output tracking control; network-induced delays; nondelayed output feedback controllers; particle swarm optimization; stability; Delays; Feedback control; Fuzzy systems; Oscillators; Output feedback; Performance analysis; Tracking loops; Network-induced delays; T-S fuzzy systems; output tracking control; particle swarm optimization (PSO); static output feedback;
Journal_Title :
Cybernetics, IEEE Transactions on
DOI :
10.1109/TCYB.2014.2354421