DocumentCode
2528351
Title
Model-based control with quantitative feedback theory
Author
Bossert, David E. ; Lamont, Gary B. ; Leahy, Michael B., Jr. ; Horowitz, Isaac M.
Author_Institution
Dept. of Electr. & Comput. Eng., US Air Force Inst. of Technol., OH, USA
fYear
1990
fDate
13-18 May 1990
Firstpage
2058
Abstract
A form of robust model-based control for a robotic arm is proposed and experimentally evaluated. The model-based with quantitative feedback theory (MBQFT) technique replaces the proportional-derivative feedback loop with a controller design based on pseudocontinuous time analog quantitative feedback theory. MBQFT design produces a feedback controller that can be implemented by a series of simple backwards difference equations. MBQFT high-speed tracking accuracy was experimentally evaluated on the first three links of a PUMA-560. This robust technique increased tracking accuracy by up to a factor of four over the model-based controller performance baseline. The MBQFT tracking performance was robust to both unmodeled drive system dynamics and payload uncertainty. The nonheuristic nature of MBQFT design and tuning should allow application to a wide range of manipulators
Keywords
feedback; model reference adaptive control systems; position control; robots; stability; MRAC; PUMA-560; high-speed tracking accuracy; pseudocontinuous time analog quantitative feedback theory; robotic arm; robust model-based control; Adaptive control; Difference equations; Feedback loop; PD control; Payloads; Proportional control; Robot control; Robust control; Robustness; Uncertainty;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Automation, 1990. Proceedings., 1990 IEEE International Conference on
Conference_Location
Cincinnati, OH
Print_ISBN
0-8186-9061-5
Type
conf
DOI
10.1109/ROBOT.1990.126308
Filename
126308
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