DocumentCode :
788006
Title :
Adaptive Control of Harmonic Drives Based on Virtual Decomposition
Author :
Zhu, Wen-Hong ; Dupuis, Erick ; Doyon, Michel ; Piedboeuf, Jean-Claude
Author_Institution :
Canadian Space Agency
Volume :
11
Issue :
5
fYear :
2006
Firstpage :
604
Lastpage :
614
Abstract :
Harmonic drives are interesting for robotic applications due to their attractive properties such as high reduction ratio, compact size, low mass, and coaxial assembly. However, the high friction and the dynamics of the flexspline are the main issues that significantly challenge the control systems. In this paper, an adaptive controller capable of adaptively compensating the friction, while incorporating the dynamics of the flexspline, is developed in both joint torque and joint-position control modes. The virtual decomposition control approach allows the dynamics of harmonic drives to be controlled separately from the conventional dynamics of the robots. Adaptive friction compensation and flexspline dynamics based control are the two main contributions of this paper. The L2/Linfin stability and the L 2-gain-induced Hinfin stability are guaranteed. Experimental results demonstrated in both time and frequency domains confirm the feasibility of the proposed approach
Keywords :
Hinfin control; adaptive control; drives; friction; position control; robot dynamics; stability; torque control; Hinfin stability; adaptive control; flexspline dynamics; friction compensation; harmonic drives; joint torque control; joint-position control; robotic; virtual decomposition control; Adaptive control; Coaxial components; Control systems; Frequency domain analysis; Friction; Programmable control; Robotic assembly; Robots; Stability; Torque control; Adaptive control; harmonic drives; motion control; precision control systems; torque control; virtual decomposition control;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2006.882992
Filename :
1709866
Link To Document :
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