DocumentCode :
39794
Title :
A Force and Displacement Self-Sensing Piezoelectric MRI-Compatible Tweezer End Effector With an On-Site Calibration Procedure
Author :
McPherson, Tristram ; Ueda, Jun
Author_Institution :
George W. Woodruff Sch. of Mech. Eng., Georgia Inst. of Technol., Atlanta, GA, USA
Volume :
19
Issue :
2
fYear :
2014
fDate :
Apr-14
Firstpage :
755
Lastpage :
764
Abstract :
This paper describes a self-sensing technique for a piezoelectrically driven magnetic resonance imaging (MRI)-compatible tweezer style end effector, suitable for robot assisted MRI guided surgery. Nested strain amplification mechanisms are used to amplify the displacement of the piezo actuators to practical levels for robotics. By using a hysteretic piezoelectric model and a two port network model for the compliant nested strain amplifiers, it is shown that force and displacement at the tweezer tip can be estimated if the input voltage and charge are measured. One piezo unit is used simultaneously as a sensor and an actuator, preserving the full actuation capability of the device. An on-site calibration procedure is proposed that calibrates the combined electromechanical model without requiring specific loading conditions on the inner piezoelectric actuators. Experimental validation shows an average of 12% error between the self-sensed and true values.
Keywords :
biomedical MRI; calibration; end effectors; medical robotics; piezoelectric actuators; sensors; surgery; MRI-compatible tweezer style end effector; compliant nested strain amplifiers; displacement self-sensing; electromechanical model; force self-sensing; hysteretic piezoelectric model; on-site calibration procedure; piezo actuators; piezo unit; piezoelectric actuators; piezoelectrically driven magnetic resonance imaging; robot assisted guided surgery; sensor; true values; two port network model; MRI compatibility; piezoelectric actuation; robotic end-effector; self-sensing;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2013.2257827
Filename :
6509917
Link To Document :
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