DocumentCode
1758622
Title
Design and Implementation of an Optical Cavity Locking Controller Test Bed System
Author
Kallapur, Abhijit G. ; Schutte, Dirk ; Petersen, Ian R. ; Boyson, Toby K. ; Huntington, Elanor ; Hassen, Sayed Z. Sayed ; Hongbin Song ; Heurs, Michele
Author_Institution
Sch. of Eng. & Inf. Technol., Univ. of New South Wales, Canberra, ACT, Australia
Volume
23
Issue
2
fYear
2015
fDate
42064
Firstpage
715
Lastpage
721
Abstract
This paper describes a new optical cavity controller test bed system for implementing modern quantum control techniques, with an emphasis on the control of optical cavities. One such quantum control task is the frequency locking of an optical cavity. Locking an optical cavity refers to the process of matching the input laser frequency to the cavity´s resonant frequency. Any deviation in the two frequencies, characterized in terms of the detuning, is undesirable. The test bed comprises an input laser, a three-mirror ring cavity, the associated optics, and a dSPACE digital signal processing system. The detuning in the system is measured in the form of an error signal, which is fed to a controller. The controller provides a suitable control input to a piezoelectric actuator mounted on one of the mirrors, altering the resonant frequency of the cavity to achieve zero detuning. The dynamics of the cavity and the piezoelectric actuator are modeled using system identification methods, an integral linear quadratic Gaussian controller is designed and implemented in dSPACE, and experimental results are presented.
Keywords
control system synthesis; discrete systems; frequency control; linear quadratic control; optical control; piezoelectric actuators; signal processing; controller design; controller test bed system; dSPACE digital signal processing system; detuning term; frequency locking; input laser; integral linear quadratic Gaussian controller; laser frequency; optical cavity locking controller; piezoelectric actuator; quantum control techniques; resonant frequency; system identification methods; three-mirror ring cavity; Adaptive optics; Cavity resonators; Control systems; Mirrors; Optical signal processing; Optical variables measurement; Resonant frequency; dSPACE; frequency locking; frequency response; linear quadratic Gaussian control; optical cavity; system identification; system identification.;
fLanguage
English
Journal_Title
Control Systems Technology, IEEE Transactions on
Publisher
ieee
ISSN
1063-6536
Type
jour
DOI
10.1109/TCST.2014.2331274
Filename
6855354
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