DocumentCode :
1318138
Title :
Optical Intensity-Type Refractometer for Remote Measurements Via Fiber-Optic Cables
Author :
Khotiaintsev, Sergei ; Garcia-Guerra, Carlos E. ; Morales-Farah, Jordi E. ; Perez-Garcia, Selene ; Yam-Ontiveros, Luis E.
Author_Institution :
Nat. Tech. Univ. of Ukraine, Kiev, Ukraine
Volume :
30
Issue :
8
fYear :
2012
fDate :
4/15/2012 12:00:00 AM
Firstpage :
1073
Lastpage :
1079
Abstract :
We present a fiber-optic refractometer with intensity-type transducer which can operate remotely via long fiber-optic cables. This version of the refractometer is intended for accessing the concentration of aqueous solutions of sodium chloride in the range from zero to about 1450/00 (1.327 <; n <; 1.353 at λ = 940 nm and 25°C), which is of significant practical interest for industrial users. We address the relationship between the span and linearity of the intensity-type optical transducer with spherical working surface which we employ in the refractometer. We optimized the transducer for the specified measurement range and achieved good sensitivity and non-linearity as small as 0.05. We significantly reduced the negative effect of the unstable optical loss of the fiber-optic cables, variation of the optical source power and photo-detector response on the readings of the refractometer by using an optical bridge configuration followed by an analogue optoelectronic signal processing unit. The refractometer has a parasitic variation of its output as low as 1.5% under a total variation of the optical source power and a fiber-optic cable loss of 20 dB. Potential applications of this refractometer include the in-situ characterization of various liquids such as the sodium chloride salt-brine solutions in food industry.
Keywords :
chemical variables measurement; fibre optic sensors; photodetectors; refractometers; signal processing equipment; spectrochemical analysis; analogue optoelectronic signal processing unit; aqueous solution concentration; fiber optic cable; intensity type transducer; optical bridge; optical intensity type refractometer; optical source power; photodetector; remote measurement; sodium chloride concentration; temperature 25 C; wavelength 940 nm; Optical fiber sensors; Optical fibers; Optical refraction; Transducers; Balanced optical bridge; fiber-optic transducer; optical fiber sensor; optical refractometry; refractive index measurement; refractometer;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2011.2167599
Filename :
6016351
Link To Document :
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