Author:
Tanaka Toshiharu, ,Otsuka Jiro,Oiwa Takaaki, ,
Abstract
Positioning devices which are composed with linear ball guideways and a linear motor are increased in recent precision positioning field. However, it is a difficult problem to achieve precision or ultra-precision positioning because rolling frictional force of the linear ball guideways is a disturbance force. Therefore, a frictional compensation is implemented by a controller. In this paper, one-axis positioning apparatus using a voice coil motor as an actuator is constructed. Moreover, several control methods are full-closed loop of measured displacement feed-back, feed-forward control of reference position and feed-forward control as like inverse transfer function using nonlinear frictional model proposed by authors. The equivalent spring constant of the nonlinear frictional model changes by the displacement. As implementing positioning tests, it is verified that the feed forward control using the nonlinear frictional model is effective for achieving the precision positioning.
Publisher
Fuji Technology Press Ltd.
Subject
Industrial and Manufacturing Engineering,Mechanical Engineering
Reference11 articles.
1. T. Oiwa et al., "Survey of Questionnaire on Ultra-precision Positioning," J. of Japan Society for Precision Engineering, Vol.69, pp. 1077-1082, 2003.
2. Y. Itou et al., "Positioning of Sub-nm Level Resolution Using New Linear Actuator and Linear Motion Ball Guideway," Proc. of Japan Society for Precision Engineering, pp. 521-522, March, 2008.
3. J. Otsuka et al., "A Study on Nonlinear Spring Behavior of Rolling Elements (1st Report)," J. of Japan Society for Precision Engineering, Vol.66, pp. 944-949, 2000.
4. J. Otsuka et al., "The Influence of Nonlinear Spring Behavior of Rolling Elements on Ultraprecision Positioning Control Systems," Nanotechnology, Vol.9, pp. 85-92, 1998.
5. S. Fukada et al., "Studies on Microscopic Behavior Ball Screw (1st Report)," J. of Japan Society for Precision Eng., Vol.66, pp. 1070-1075, 2000.
Cited by
10 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献