Title :
Research on the control of reticle stage macro movement motor
Author :
Yue Dong ; Xing-lin Chen ; Yang Liu
Author_Institution :
Sch. of Astronaut., Harbin Inst. of Technol., Harbin, China
Abstract :
The reticle stage of lithography is a high precision servo motion platform, which requires using macro movement of linear motor and micro movement of voice coil motor to realize an nm-level positioning precision and tracking. In order to increase the control effect and response speed of macro movement motor of reticle stage of lithography, there we present a control strategy in combination with feed-forward thrust fluctuation compensation based on query table, the PID controller, and robust ILC controller. Firstly, the method separate the tracking error that is caused by the motor thrust fluctuation, then according to the speed build a query table to construct feedforward thrust fluctuation model, which is used for system thrust fluctuation compensation; the PID controller aim to improve the anti-interference ability of the system; through adding the attenuation factor, the robust ILC controller ensure the tracking error would be astringe to zero. The results showed that this method can well restrain the effects of thrust fluctuation from the motor, and the macro movement motor positioning quickly and accurately.
Keywords :
fluctuations; linear machines; lithography; machine control; reticles; robust control; servomotors; three-term control; PID controller; anti-interference ability; attenuation factor; control effect; feed-forward thrust fluctuation compensation; high precision servo motion platform; linear motor; lithography; motor thrust fluctuation; nm-level positioning precision; precision tracking; query table; response speed; reticle stage macro movement motor control; robust ILC controller; tracking error; voice coil motor; Automation; Feedforward neural networks; Fluctuations; Intelligent control; Lithography; Robustness; Tracking; PID controller; feed-forward compensation; lithography; macro movement of linear motor; reticle stage; robust ILC;
Conference_Titel :
Intelligent Control and Automation (WCICA), 2014 11th World Congress on
DOI :
10.1109/WCICA.2014.7053122