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High-precision velocity control of direct-drive systems based on friction compensation.
- Source :
- Mechanical Sciences; 2024, Vol. 15 Issue 1, p385-394, 10p
- Publication Year :
- 2024
-
Abstract
- Friction is a complex nonlinear behavior and a significant factor that limits the performance improvement of servo systems. Drawing inspiration from the particular prestiction friction phenomenon exhibited by direct-drive systems upon sudden emergency stops, this paper introduces a dynamic and continuous friction model that includes pre-sliding and gross-sliding regimes. By analyzing the friction dynamics when the system velocity briefly reaches zero, a concave function related to the previous state of the system is used to describe the transition of friction in the pre-sliding regime. The Stribeck model is employed to represent the friction behavior in the gross-sliding regime, ensuring stationarity during friction regime switching. Based on the established friction model, a friction compensation method is developed in velocity control mode. The superior performance of this proposed friction compensation method is confirmed through sine-tracking experiments. Compared with the proportional integral controller and the Stribeck friction compensation method, the peak-to-peak value of the proposed method is reduced by up to 61.1 %, and the root-mean-square (rms) value is reduced by up to 81 %, with the smallest rms value reaching 0.13 mrad, significantly improving the dynamic tracking performance of the system. [ABSTRACT FROM AUTHOR]
- Subjects :
- CONCAVE functions
FRICTION
VELOCITY
INSPIRATION
INTEGRALS
Subjects
Details
- Language :
- English
- ISSN :
- 21919151
- Volume :
- 15
- Issue :
- 1
- Database :
- Complementary Index
- Journal :
- Mechanical Sciences
- Publication Type :
- Academic Journal
- Accession number :
- 179299182
- Full Text :
- https://doi.org/10.5194/ms-15-385-2024