Title :
Robust fast and precise positioning with feedfoward disturbance compensation
Author :
Maebashi, Wataru ; Ito, Kazuaki ; Iwasaki, Makoto
Author_Institution :
Dept. of Electr. & Electron. Eng., Nagoya Inst. of Technol., Nagoya, Japan
Abstract :
This paper presents a feedforward disturbance compensation approach for the fast and precise positioning of table systems. In the micro-scopic displacement region of the table motion, since the friction behaves nonlinear spring characteristics depending on the displacement, the table positioning accuracy may be deteriorated according to the table motion such as inching and reciprocating motions, while the friction behaves Coulomb and viscous properties in the coarse displacement region. In this paper, a feedforward compensation approach for the nonlinear friction is proposed, where same structural mathematical disturbance model can compensate regardless of the displacement regions. The proposed positioning control approach with the disturbance modeling and compensation has been verified by experiments using a linear table system on machine stand.
Keywords :
compensation; feedforward; friction; machining; motion control; position control; robust control; Coulomb properties; coarse displacement region; disturbance modeling; feedfoward disturbance compensation; friction; inching motions; linear table system; machine stand; microscopic displacement region; nonlinear spring characteristics; positioning control approach; precise positioning; reciprocating motions; robust fast positioning; table motion; table positioning accuracy; table systems; viscous properties; Accuracy; Feedforward neural networks; Friction; Integrated circuit modeling; Tracking; Trajectory; Vibrations;
Conference_Titel :
IECON 2011 - 37th Annual Conference on IEEE Industrial Electronics Society
Conference_Location :
Melbourne, VIC
Print_ISBN :
978-1-61284-969-0
DOI :
10.1109/IECON.2011.6119861