DocumentCode :
1473153
Title :
New synthetic-heterodyne demodulator for an optical fiber interferometer
Author :
Lo, Yu-Lung ; Chuang, Chin-Ho
Author_Institution :
Dept. of Mech. Eng., Nat. Cheng Kung Univ., Tainan, Taiwan
Volume :
37
Issue :
5
fYear :
2001
fDate :
5/1/2001 12:00:00 AM
Firstpage :
658
Lastpage :
663
Abstract :
A new algorithm for modulating a PZT stack using a sinewave signal instead of a saw-tooth signal was developed in order to resolve the flyback problem in a PZT driver. An improved synthetic heterodyne demodulator circuit was designed and arranged to interrogate the output signal from an interferometric sensor with a sinewave modulation (phase-generated carrier). The depth of modulation, or a gain amplifier in the circuit design, was adjusted such that the standard heterodyne signal could be formed. The result is a conventional PM-modulated carrier that can be demodulated using standard techniques, followed by a lock-in amplifier or a phase meter, to recover the phase shift in the sensing information. Implementing it into a path-matching differential interferometer for the signal modulation validates this new method. As compared to the conventional technique, modulating the PZT stack in a saw-tooth signal, this technique supplies a wider modulated frequency and, therefore, a wider frequency response in a sensing system. Finally, the new synthetic heterodyne is applied to a differential optical fiber refractometer for measuring the refractive index change. A lock-in amplifier is chosen as the demodulator to extract the phase shift. Therefore, the resolution of this sensing system is 7.52×10-7 refractive index unit for a 120-μm length of the sensing cavity
Keywords :
demodulators; fibre optic sensors; frequency response; heterodyne detection; lead compounds; light interferometers; optical design techniques; optical materials; optical modulation; optical phase locked loops; optical phase shifters; phase modulation; refractive index measurement; refractometers; sensitivity; 120 mum; PM-modulated carrier; PZT; PZT driver; PZT stack; PbZrO3TiO3; circuit design; demodulation; differential optical fiber refractometer; flyback problem; frequency response; gain amplifier; improved synthetic heterodyne demodulator circuit; interferometric sensor; lock-in amplifier; modulated frequency; optical fiber interferometer; output signal; path-matching differential interferometer; phase meter; phase shift; phase-generated carrier; refractive index change; refractive index unit; resolution; saw-tooth signal; sensing cavity; sensing information; sensing system; signal modulation; sinewave modulation; sinewave signal; standard heterodyne signal; standard techniques; synthetic heterodyne; synthetic-heterodyne demodulator; Circuit synthesis; Demodulation; Driver circuits; Optical amplifiers; Optical fibers; Optical interferometry; Phase modulation; Refractive index; Signal design; Signal resolution;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/3.918578
Filename :
918578
Link To Document :
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