DocumentCode :
490439
Title :
An Algorithm for High-Speed Control of Machine Tools
Author :
Tung, E.D. ; Urushisaki, Y. ; Tomizuka, M.
Author_Institution :
Department of Mechanical Engineering University of California Berkeley, CA 94720
fYear :
1993
fDate :
2-4 June 1993
Firstpage :
1966
Lastpage :
1970
Abstract :
Experiments are performed for end-milling aluminum at 15,000 RPM spindle speed (1,508 m/min cutting speed) and up to 3 m/min table feedspeed using an eexperimental machine tool control system. A digital feedforward controle for feed drive control is designed based on the zero phase error tracking controller (ZPETC), using a model derived from a frequency-weighted identifcation of the closed-loop plant. The controller achieves near-perfect (± 3 ¿m) tracking over a 26 mm trajectory with a maximum speed of 2 m/min. The maximum contouring error for a 26 mm diameter circle at this speed is less than 4 ¿m. Tracking and contouring experiments are conducted for table feedspeeds as high as 10 m/min. Frquency domain analysis demonstrates that the feedforward controller achieves a bandwidth of 10 Hz without phase distortion. In a direct comparison of machining accuracy, the experimental controller demonstrates a significant improvement over an industrial CNC, as measured by a coordinate measuring machine.
Keywords :
Aluminum; Bandwidth; Control systems; Coordinate measuring machines; Digital control; Error correction; Feeds; Frequency; Machine tools; Trajectory;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
American Control Conference, 1993
Conference_Location :
San Francisco, CA, USA
Print_ISBN :
0-7803-0860-3
Type :
conf
Filename :
4793220
Link To Document :
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