Title :
High speed contouring control of biaxial systems based on task polar coordinate frame
Author :
Hao Meng ; Yunjiang Lou ; Jiaying Chen
Author_Institution :
Shenzhen Grad. Sch., Xili Univ. Town, Shenzhen, China
Abstract :
Contouring control based on task coordinate frames (TCF) can improve the contouring performance directly by strengthening the tracking capability along contour-following direction. A novel task polar coordinate frame (TPCF) is proposed for the biaxial system contouring control, based on circular approximation. Compared with the classical TCF using tangent line approximation, TPCF can achieve more accurate contouring error estimation for free-form contours. The controller is designed in TPCF via linearizing the transformed error dynamics which is strong coupling and nonlinear. Different dynamics are assigned to the radial (representing the contour following direction) and the angular (representing the trajectory tracking direction) with a strong emphasis on minimizing the contouring error. Experiments on an XY-stage verified that TPCF based contouring control could decrease the contouring error much more evidently compared with classical TCF based, especially in high speed and/or large curvature cases.
Keywords :
approximation theory; control system synthesis; linearisation techniques; TPCF-based contouring control; XY-stage; angular direction; circular approximation; contour-following direction; contouring error estimation; contouring performance improvement; controller design; error dynamics linearization; free-form contours; high-speed biaxial system contouring control; radial direction; task polar coordinate frame; tracking capability; trajectory-tracking direction; Approximation methods; Conferences; Equations; Feedforward neural networks; Nonlinear dynamical systems; Trajectory;
Conference_Titel :
Industrial Electronics and Applications (ICIEA), 2013 8th IEEE Conference on
Conference_Location :
Melbourne, VIC
Print_ISBN :
978-1-4673-6320-4
DOI :
10.1109/ICIEA.2013.6566621