DocumentCode :
891104
Title :
Adaptive stabilizing and tracking control for a nonlinear inverted-pendulum system via sliding-mode technique
Author :
Wai, Rong-Jong ; Chang, Li-Jung
Author_Institution :
Dept. of Electr. Eng., Yuan Ze Univ., Chung Li, Taiwan
Volume :
53
Issue :
2
fYear :
2006
fDate :
4/1/2006 12:00:00 AM
Firstpage :
674
Lastpage :
692
Abstract :
Since the system behaviors of a dual-axis inverted-pendulum mechanism including actuator dynamics are highly nonlinear, it is difficult to design a suitable control system that realizes real-time stabilization and accurate tracking control at all times. In this paper, an adaptive sliding-mode control system is implemented to control a dual-axis inverted-pendulum mechanism that is driven by permanent magnet synchronous motors. First, the energy conservation principle is adopted to build a mathematical model of the motor-mechanism-coupled system. Moreover, an adaptive sliding-mode control system is developed for stabilizing and tracking control of the dual-axis inverted-pendulum system, where an adaptive algorithm is investigated to relax the requirement of the bound of lumped uncertainty in the traditional sliding-mode control. In addition, numerical simulation and experimental results show that the proposed control scheme provides high-performance dynamic characteristics and is robust with regard to parametric variations, various reference trajectories, and different initial states.
Keywords :
adaptive control; machine control; nonlinear control systems; pendulums; permanent magnet motors; stability; synchronous motors; variable structure systems; accurate tracking control; actuator dynamics; adaptive sliding-mode control system; adaptive stabilization; dual-axis inverted-pendulum mechanism; energy conservation principle; lumped uncertainty; mathematical model; motor-mechanism-coupled system; nonlinear inverted-pendulum system; numerical simulation; permanent magnet synchronous motor; real-time stabilization; Actuators; Adaptive control; Adaptive systems; Control systems; Nonlinear control systems; Nonlinear dynamical systems; Permanent magnet motors; Programmable control; Real time systems; Sliding mode control; Adaptive control; energy conservation principle; inverted pendulum; permanent-magnet (PM) synchronous motor; sliding-mode control;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2006.870680
Filename :
1614150
Link To Document :
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