DocumentCode :
1024996
Title :
Real-time translational control of a MEMS comb resonator
Author :
Wang, L. ; Dawson, J.M. ; Hornak, L.A. ; Famouri, P. ; Ghaffarian, R.
Author_Institution :
Microelectron. Syst. Res. Center, West Virginia Univ., Morgantown, WV, USA
Volume :
40
Issue :
2
fYear :
2004
fDate :
4/1/2004 12:00:00 AM
Firstpage :
567
Lastpage :
575
Abstract :
Closed-loop control has been successfully applied to a microelectromechanical systems (MEMS) lateral comb resonator device in real-time to perform impulse disturbance damping and sinusoidal position control, enabled by the use of a through-wafer optical microprobe to obtain position feedback. This result leverages the application of lifetime, in-situ control of MEMS in order to provide quality assurance of microsystems in safety critical applications. A position feedback signal produced by a through-wafer optical microprobe has been used for comb resonator system model identification by two independent methods to accurately determine the effective mass, damping, and spring constant values of the device. After accurate determination of system parameters, closed-loop impulse disturbance damping and proportional-integral-differential (PID) translational control were applied. Closed-loop control results presented indicate controllability of such microstructures and response times on the order of the natural frequency of the device.
Keywords :
closed loop systems; micromechanical resonators; position control; three-term control; MEMS comb resonator device; PID translational control; closed-loop control; closed-loop disturbance damping; device spring constant value; effective mass; impulse disturbance damping; lateral comb resonator device; microelectromechanical systems; position feedback signal; proportional-integral-differential; real-time translational control; sinusoidal position control; through-wafer optical microprobe; Control systems; Damping; Microelectromechanical systems; Micromechanical devices; Optical control; Optical devices; Optical feedback; Optical resonators; Position control; Real time systems;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/TAES.2004.1310005
Filename :
1310005
Link To Document :
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