DocumentCode :
1443408
Title :
Torque ripple and misalignment torque compensation for the built-in torque sensor of harmonic drive systems
Author :
Taghirad, Hamid D. ; Bélanger, P.R.
Author_Institution :
Dept. of Electr. Eng., McGill Univ., Montreal, Que., Canada
Volume :
47
Issue :
1
fYear :
1998
fDate :
2/1/1998 12:00:00 AM
Firstpage :
309
Lastpage :
315
Abstract :
A harmonic drive is a compact, lightweight, and high-ratio torque transmission device which is used in many electrically actuated robot manipulators. In this paper a built-in torque sensor for harmonic-drive systems is examined in detail. The method proposed by Hashimoto, in which strain gauges are directly mounted on the flexspline, is employed and improved in this paper. To minimize sensing inaccuracy, four Rosette strain gauges are used employing an accurate positioning method. To cancel the torque ripples, the oscillation observed on the measured torque and caused mainly by gear teeth meshing, Kalman filter estimation is used. A simple fourth-order harmonic oscillator proved to accurately model the torque ripples. Moreover, the error model is extended to incorporate any misalignment torque. By on-line implementation of the Kalman filter, it has been shown that this method is a fast and accurate way to filter torque ripples and misalignment torque. Hence, the intelligent built-in torque sensor is a viable and economical way to measure the harmonic-drive transmitted torque and to employ that for torque feedback strategies
Keywords :
Kalman filters; electric actuators; electric drives; error compensation; flexible manipulators; force feedback; intelligent sensors; position control; robust control; strain gauges; torque control; torque measurement; Kalman filter estimation; Rosette strain gauges; accurate positioning method; built-in torque sensor; directly mounted strain gauges; electrically actuated robot manipulators; error model; flexspline; fourth-order harmonic oscillator; gear teeth meshing; harmonic drive systems; high-ratio torque transmission device; intelligent sensor; misalignment torque compensation; on-line implementation; torque feedback; torque ripple compensation; Capacitive sensors; Gears; Intelligent sensors; Manipulators; Oscillators; Power harmonic filters; Robot sensing systems; Sensor systems; Teeth; Torque measurement;
fLanguage :
English
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9456
Type :
jour
DOI :
10.1109/19.728840
Filename :
728840
Link To Document :
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