DocumentCode
859134
Title
Redefinition of the robot motion-control problem
Author
Sweet, Larry M. ; Good, Malcolm C.
Author_Institution
General Electric Company, Schenectady, NY, USA
Volume
5
Issue
3
fYear
1985
fDate
8/1/1985 12:00:00 AM
Firstpage
18
Lastpage
25
Abstract
The objective of this paper is a redefinition of the robot control problem, based on (1) realistic models for the industrial robot as a controlled plant, (2) end-effector trajectories consistent with manufacturing applications, and (3) the need for end-effector sensing to compensate for uncertainties inherent to most robotic manufacturing applications. Based on extensive analytical and experimental studies, robot dynamic models are presented that have been validated over the frequency range 0 to 50 Hz. These models exhibit a strong influence of drive system flexibility, producing lightly damped poles in the neighborhood of 8 Hz, 14 Hz, and 40 Hz, all unmodeled by the conventional rigid-body multiple-link robot dynamic approach. The models presented also quantify the significance of non-linearities in the drive system, in addition to those well known in the linkage itself. Simulations of robot dynamics and motion controls demonstrate that existing controls coupled with effective path planning produce dynamic path errors that are acceptable for most manufacturing applications. Major benefits are projected, with examples cited, for use of end-effector sensors for position, force, and process control.
Keywords
Robots; Industrial control; Manufacturing industries; Motion control; Nonlinear dynamical systems; Pulp manufacturing; Robot control; Robot sensing systems; Service robots; Uncertainty; Virtual manufacturing;
fLanguage
English
Journal_Title
Control Systems Magazine, IEEE
Publisher
ieee
ISSN
0272-1708
Type
jour
DOI
10.1109/MCS.1985.1104955
Filename
1104955
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