TY - JOUR
T1 - Adaptive Fuzzy Tracking Control for Pure-feedback Systems with Event-triggered Strategy
AU - Chen, Lian
AU - Wang, Qing
N1 - Publisher Copyright:
© 2023, ICROS, KIEE and Springer.
PY - 2023/7
Y1 - 2023/7
N2 - This paper considers an event-triggered tracking control problem of uncertain pure-feedback systems with adaptive fuzzy approximation technology. Unlike existing research, this paper first directly introduces affine variables and an auxiliary control signal to solve the non-affine problem of pure feedback systems. Next, fuzzy logic systems (FLSs) are trained to model some unknown functions. Then, a new fuzzy adaptive event-triggered controller is proposed for uncertain pure-feedback systems by integrating an improved event-triggered technique with dynamic surface control (DSC) framework. Stability analysis shows that the proposed control method guarantees all closed-loop system signals are semi-globally uniformly ultimately bounded. The main innovations of this paper are that the strict assumptions for pure-feedback systems are circumvented, and a new event-triggered mechanism that considers higher tracking accuracy and lower communication load is developed. Finally, a comparison simulation and a practical application are provided to show the feasibility and effectiveness of the presented controller.
AB - This paper considers an event-triggered tracking control problem of uncertain pure-feedback systems with adaptive fuzzy approximation technology. Unlike existing research, this paper first directly introduces affine variables and an auxiliary control signal to solve the non-affine problem of pure feedback systems. Next, fuzzy logic systems (FLSs) are trained to model some unknown functions. Then, a new fuzzy adaptive event-triggered controller is proposed for uncertain pure-feedback systems by integrating an improved event-triggered technique with dynamic surface control (DSC) framework. Stability analysis shows that the proposed control method guarantees all closed-loop system signals are semi-globally uniformly ultimately bounded. The main innovations of this paper are that the strict assumptions for pure-feedback systems are circumvented, and a new event-triggered mechanism that considers higher tracking accuracy and lower communication load is developed. Finally, a comparison simulation and a practical application are provided to show the feasibility and effectiveness of the presented controller.
KW - Adaptive fuzzy control
KW - dynamic surface control
KW - event-triggered control
KW - pure-feedback systems
UR - https://www.scopus.com/pages/publications/85158131401
U2 - 10.1007/s12555-021-0953-8
DO - 10.1007/s12555-021-0953-8
M3 - 文章
AN - SCOPUS:85158131401
SN - 1598-6446
VL - 21
SP - 2202
EP - 2209
JO - International Journal of Control, Automation and Systems
JF - International Journal of Control, Automation and Systems
IS - 7
ER -