DocumentCode
1505556
Title
LuGre-Model-Based Friction Compensation
Author
Freidovich, Leonid ; Robertsson, Anders ; Shiriaev, Anton ; Johansson, Rolf
Author_Institution
Dept. of Appl. Phys. & Electron., Umea Univ., Ume, Sweden
Volume
18
Issue
1
fYear
2010
Firstpage
194
Lastpage
200
Abstract
A tracking problem for a mechanical system is considered. We start with a feedback controller that is designed without attention to disturbances, which are assumed to be adequately described by a dynamic LuGre friction model. We are interested in deriving a superimposed observer-based compensator to annihilate or reduce the influence of such a disturbance. We exploit a recently suggested approach for observer design for LuGre-friction-model-based compensation. In order to apply this technique, it is necessary to know the Lyapunov function for the unperturbed system, as well as the parameters of the dynamic friction model, and to verify that a certain structural property satisfied. The case when the system is passive with respect to the matching disturbance related to the given Lyapunov function is illustrated in this brief with a DC-motor example. The main contribution is some new insights into the numerical real-time implementation of a compensator for disturbances describable by one of various LuGre-type models. The other contribution, which is built upon the main one, is experimental verification of the suggested model-based observer design procedure.
Keywords
Lyapunov methods; compensation; control system synthesis; feedback; friction; observers; LuGre-model-based friction compensation; Lyapunov function; dynamic LuGre friction model; dynamic friction model; feedback controller; mechanical system; model-based observer design; numerical real-time implementation; superimposed observer-based compensator; tracking problem; unperturbed system; Friction compensation; LuGre model; observer design; real-time implementation;
fLanguage
English
Journal_Title
Control Systems Technology, IEEE Transactions on
Publisher
ieee
ISSN
1063-6536
Type
jour
DOI
10.1109/TCST.2008.2010501
Filename
5291704
Link To Document