TY - JOUR
T1 - Time-delay luenberger observer design for sliding mode control of nonlinear markovian jump systems via event-triggered mechanism
AU - Cheng, Min
AU - Zhang, Chunyang
AU - Qiu, Jin
AU - Wu, Zhengtian
AU - Gao, Qing
N1 - Publisher Copyright:
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.
PY - 2021/11
Y1 - 2021/11
N2 - This paper is focused on the stabilization of Takagi–Sugeno fuzzy model-based Markovian jump systems with the aid of a delayed state observer. Due to network-induced constraints in the communication channel, a delay partition method combined with an event-triggered mechanism is proposed to design the observer. Then, a novel integral sliding surface is designed, based on which sliding mode dynamics is obtained. Further, according to stochastic stability theory, feasible conditions are provided to ensure the sliding mode dynamics and the error dynamics have an H∞ attenuate level γ. The challenge is to deal with the issue that transition rates may be totally unknown. Moreover, an observer-based sliding mode controller is constructed to ensure the finite-time reachability of the predefined sliding surface. Finally, a numerical example based on a robotic manipulator is given to verify the effectiveness of the proposed method.
AB - This paper is focused on the stabilization of Takagi–Sugeno fuzzy model-based Markovian jump systems with the aid of a delayed state observer. Due to network-induced constraints in the communication channel, a delay partition method combined with an event-triggered mechanism is proposed to design the observer. Then, a novel integral sliding surface is designed, based on which sliding mode dynamics is obtained. Further, according to stochastic stability theory, feasible conditions are provided to ensure the sliding mode dynamics and the error dynamics have an H∞ attenuate level γ. The challenge is to deal with the issue that transition rates may be totally unknown. Moreover, an observer-based sliding mode controller is constructed to ensure the finite-time reachability of the predefined sliding surface. Finally, a numerical example based on a robotic manipulator is given to verify the effectiveness of the proposed method.
KW - Event-triggering scheme
KW - Markovian jump systems
KW - Observer design
KW - Sliding mode control
UR - https://www.scopus.com/pages/publications/85119064191
U2 - 10.3390/machines9110259
DO - 10.3390/machines9110259
M3 - 文章
AN - SCOPUS:85119064191
SN - 2075-1702
VL - 9
JO - Machines
JF - Machines
IS - 11
M1 - 259
ER -