DocumentCode
638884
Title
Vibration suppression control for multiaxis table drive system
Author
Tsuruta, K. ; Ojiro, Tetsuya ; Ushimi, Nobuhiro ; Shibata, Hajime
Author_Institution
Dept. of Biorobotics, Kyushu Sangyo Univ., Fukuoka, Japan
fYear
2013
fDate
4-7 Aug. 2013
Firstpage
1135
Lastpage
1140
Abstract
This paper presents new vibration suppression control method for multiaxis table drive system. In multiaxis table drive system, the synchronization error disturbs high precision and a fast response time to cause serious vibration. It is caused by a motion error due to a characteristics change of a table slide system. In the case of synchronization error suppression, the model of motion characteristics of a table slide system is necessary and the time delay in a servo controller has to compensate. The proposed method consists of two steps. The first step is the identification of moment of load inertia, viscous friction coefficient and coulomb friction for each axis in an independent state by offline identification method to make a table slide system. The second step is new predictive synchronization error compensation algorithm (PSEC) to reject of the transfer delay time influence of servo controller in a state with the axis interference. PSCA is designed by using synchronization torque error, velocity error and position error. The proposed method is verified by the simulations and the experimental results that PSEC is robust as compared to the without predictive function on the twin axes drive system.
Keywords
delays; drives; error compensation; friction; identification; predictive control; robust control; servomechanisms; synchronisation; torque control; vibration control; PSCA design; axis interference; coulomb friction; load inertia moment identification; motion error; multiaxis table drive system; position error; predictive synchronization error compensation algorithm; robust PSEC; servo controller; synchronization error suppression; synchronization torque error; table slide system characteristic change; time delay compensation; transfer delay time influence; velocity error; vibration suppression control method; viscous friction coefficient; Delays; Equations; Friction; Mathematical model; Synchronization; Torque; Vibrations; Synchronization error; Vibration control;
fLanguage
English
Publisher
ieee
Conference_Titel
Mechatronics and Automation (ICMA), 2013 IEEE International Conference on
Conference_Location
Takamatsu
Print_ISBN
978-1-4673-5557-5
Type
conf
DOI
10.1109/ICMA.2013.6618074
Filename
6618074
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