DocumentCode
3601648
Title
Identification of Two-Mass Mechanical Systems Using Torque Excitation: Design and Experimental Evaluation
Author
Saarakkala, Seppo E. ; Hinkkanen, Marko
Author_Institution
Sch. of Electr. Eng., Aalto Univ., Aalto, Finland
Volume
51
Issue
5
fYear
2015
Firstpage
4180
Lastpage
4189
Abstract
This paper deals with methods for parameter estimation of two-mass mechanical systems in electric drives. Estimates of mechanical parameters are needed in the start-up of a drive for automatic tuning of model-based speed and position controllers. A discrete-time output error (OE) model is applied to parameter estimation. The resulting pulse-transfer function is transformed into a continuous-time transfer function, and parameters of the two-mass system model are analytically solved from the coefficients of this transfer function. An open-loop identification setup and two closed-speed-loop identification setups (direct and indirect) are designed and experimentally compared. The experiments are carried out at nonzero speed to reduce the effect of nonlinear friction phenomena on the parameter estimates. According to results, all three identification setups are applicable for the parameter estimation of two-mass mechanical systems.
Keywords
angular velocity control; electric drives; machine control; parameter estimation; position control; torque motors; automatic tuning; closed-speed-loop identification; continuous-time transfer function; discrete time output error; electric drives; mechanical parameters; open-loop identification; parameter estimation; position controller; pulse-transfer function; speed controller; torque excitation; two-mass mechanical systems; Frequency estimation; Mechanical systems; Resonant frequency; Torque; Transfer functions; Vectors; Electric drives; parameter estimation; resonant mechanical load; torsional oscillation;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2015.2416128
Filename
7065261
Link To Document