DocumentCode :
3134852
Title :
QSMC based on reaching law using saturation sliding surface for 6R industrial robots
Author :
Yu, Dianyong ; Wang, Xiaojue ; Ge, Lianzheng ; Chen, Jian
Author_Institution :
State Key Lab. of Robot. & Syst., Harbin Inst. of Technol., Harbin, China
fYear :
2012
fDate :
5-8 Aug. 2012
Firstpage :
1857
Lastpage :
1861
Abstract :
Quasi Sliding Mode Control (QSMC) based on reaching law has the advantages of simplicity and robustness. The chattering is also reduced by using a saturation function. But this control strategy only guarantees an asymptotic convergence. In order to increase the tracking speed for robotic joints when tracking error is small, a sliding surface with saturation function of the error is proposed in this paper. By applying this sliding surface, a fast finite time convergence is achieved. 6R industrial robots have highly coupled inertia coefficients in the inertia matrix. When modeling error exists, system precision and stability would be affected greatly. To improve the system robustness property, separate sliding surface feedback compensation torques mainly for the last three joints are applied in this paper. The compensation torques also help increase the tracking speed. The proposed controller is tested through ADAMS-MATLAB co-simulations on a 6R serial industrial robot prototype to prove its effectiveness.
Keywords :
compensation; control nonlinearities; digital simulation; feedback; industrial manipulators; mathematics computing; matrix algebra; variable structure systems; 6R serial industrial robot prototype; ADAMS-MATLAB cosimulations; QSMC; asymptotic convergence; chattering reduction; fast finite time convergence; inertia coefficients; inertia matrix; quasi sliding mode control; reaching law; robotic joints; saturation function; saturation sliding surface; separate sliding surface feedback compensation torques; Convergence; Joints; Manipulators; Robustness; Service robots; Torque; Industrial robot; Lyapunov method; Quasi sliding mode control; Saturation sliding surface;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mechatronics and Automation (ICMA), 2012 International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4673-1275-2
Type :
conf
DOI :
10.1109/ICMA.2012.6285104
Filename :
6285104
Link To Document :
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