Title :
Command-based iterative learning control with TCP function for five-axis contouring
Author :
Ming-Tzong Lin ; Bing-Huan Tsai ; Chien-Yi Lee ; Shih-Kai Wu ; Hung-Ming Lee
Author_Institution :
Dept. of Mech. Design Eng., Nat. Formosa Univ., Yunlin, Taiwan
Abstract :
This paper presents a novel approach for precision machining in five-axis machine tools through the use of five-axis command-based iterative learning control (FCILC). A command-based iterative learning control algorithm with tool center point (TCP) control and interpolation function is developed to improve the tracking and contouring performance of the TCP for the repetitive contoured trajectories. The TCP control function is utilized to generate smooth velocity profiles and interpolation commands where the jerk of each axis is limited by the given constraints. The contour error estimation method for five axes is developed to efficiently compute the contour errors. Applying the FCILC technique to the original control architecture enables reducing tracking error caused by servo lag and friction, and alleviating noise effect during repetitive learning tasks. Finally, contouring experiments are conducted on a five-axis engraving machine to demonstrate that the tracking and contour errors can be enhanced significantly using the proposed FCILC method.
Keywords :
adaptive control; friction; interpolation; iterative methods; learning systems; machine tools; machining; noise abatement; FCILC technique; TCP control function; contour error estimation method; contouring performance improvement; control architecture; five-axis command-based iterative learning control; five-axis contouring; five-axis engraving machine; five-axis machine tools; friction; interpolation function; jerk; noise effect alleviation; precision machining; repetitive contoured trajectories; repetitive learning tasks; servo lag; smooth velocity profiles; tool center point control; tracking error reduction; tracking performance improvement; Equations; Error analysis; Interpolation; Kinematics; Machining; Mathematical model; Trajectory; Iterative learning control (ILC); TCP control; contour error; five-axis machining; path planning;
Conference_Titel :
Mechatronics and Automation (ICMA), 2013 IEEE International Conference on
Conference_Location :
Takamatsu
Print_ISBN :
978-1-4673-5557-5
DOI :
10.1109/ICMA.2013.6618056