DocumentCode :
3313247
Title :
RBF-based compensation method on displacement and thermal error
Author :
Kok Kiong Tan ; Rui Yang ; Poi Voon Er ; Tay, Arthur ; Chek Sing Teo
Author_Institution :
SIMTech-NUS Joint Lab. (Precision Motion Syst.), Nat. Univ. of Singapore, Singapore, Singapore
fYear :
2013
fDate :
4-7 Aug. 2013
Firstpage :
1039
Lastpage :
1044
Abstract :
With rapid development in the technologies of high precision machining and the ever increasing demand for high accuracy in the automation industry, addressing accuracy problems due to geometric and thermal errors are becoming more critical in recent years, especially thermal errors which may contribute up to 75% of the overall errors in the system. Retrofitting the mechanical design or maintaining the operational temperature may not be feasible and can significantly increase cost. An error compensation method is more efficient and cost effective. In this paper, a displacement and thermal error compensation approach is proposed and developed based on radial basis functions. Feedback control is designed in both position control subsystem and temperature control subsystem. Raw position data is measured using the laser interferometer and the raw temperature data is measured using a thermistor. The overall geometric errors are related to both movement positions and the machine operating temperatures, so a 2-D RBF network is designed and trained to model and estimate the geometric errors. The RBFs are then used to compensate the error. The experimental results showed that the proposed approach can help improve the system performance and accuracy effectively.
Keywords :
control system synthesis; error compensation; feedback; light interferometers; machinery; machining; neurocontrollers; position control; position measurement; radial basis function networks; temperature control; temperature measurement; RBF-based compensation method; automation industry; displacement error; error compensation method; feedback control design; geometric error; high precision machining; laser interferometer; mechanical design or; position control subsystem; radial basis function method; raw position data measurement; raw temperature data measurement; temperature control subsystem; thermal error; Error compensation; Heating; Measurement uncertainty; Optical variables measurement; Position measurement; Temperature measurement; Temperature sensors; Error Compensation; Radial Basis Function; Thermal Compensation;
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.2013.6618058
Filename :
6618058
Link To Document :
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