TY - JOUR
T1 - A novel dynamic terminal sliding mode control of uncertain nonlinear systems
AU - Liu, Jinkun
AU - Sun, Fuchun
PY - 2007/5
Y1 - 2007/5
N2 - A new dynamic terminal sliding mode control (DTSMC) technique is proposed for a class of single-input and single-output (SISO) uncertain nonlinear systems. The dynamic terminal sliding mode controller is formulated based on Lyapunov theory such that the existence of the sliding phase of the closed-loop control system can be guaranteed, chattering phenomenon caused by the switching control action can be eliminated, and high precision performance is realized. Moreover, by designing terminal equation, the output tracking error converges to zero in finite time, the reaching phase of DSMC is eliminated and global robustness is obtained. The simulation results for an inverted pendulum are given to demonstrate the properties of the proposed method.
AB - A new dynamic terminal sliding mode control (DTSMC) technique is proposed for a class of single-input and single-output (SISO) uncertain nonlinear systems. The dynamic terminal sliding mode controller is formulated based on Lyapunov theory such that the existence of the sliding phase of the closed-loop control system can be guaranteed, chattering phenomenon caused by the switching control action can be eliminated, and high precision performance is realized. Moreover, by designing terminal equation, the output tracking error converges to zero in finite time, the reaching phase of DSMC is eliminated and global robustness is obtained. The simulation results for an inverted pendulum are given to demonstrate the properties of the proposed method.
KW - Dynamic sliding mode
KW - Inverted pendulum
KW - Robust control
KW - Terminal sliding mode control
UR - https://www.scopus.com/pages/publications/34547260359
U2 - 10.1007/s11768-005-5275-5
DO - 10.1007/s11768-005-5275-5
M3 - 文章
AN - SCOPUS:34547260359
SN - 1672-6340
VL - 5
SP - 189
EP - 193
JO - Journal of Control Theory and Applications
JF - Journal of Control Theory and Applications
IS - 2
ER -