DocumentCode :
1303416
Title :
Optical Salinity Sensor System Based on Fiber-Optic Array
Author :
Zhao, Yong ; Zhang, Xinyuan ; Zhao, Tingting ; Yuan, Bo ; Zhang, Shuo
Author_Institution :
Coll. of Inf. Sci. & Eng., Northeastern Univ., Shenyang, China
Volume :
9
Issue :
9
fYear :
2009
Firstpage :
1148
Lastpage :
1153
Abstract :
The refractive index of salt water changes corresponding to the variation of salinity. Based on a differential refractometer, the salinity can be measured due to beam deviation, and the influence of temperature on the measurement results is reduced effectively. Beam deviation caused by salinity change is detected by a fiber-optic array and recorded by a charge-coupled device. According to the Gauss distribution theory, the light-spot center can be determined by fitting a Gauss curve using each received light spot intensity and the position of each receiving fiber. With this method, measurement errors caused by light power fluctuation and ambient light disturbance can be avoided effectively. Variation in transmission power loss of each receiving fiber reduces the measurement accuracy of salinity. Therefore, a method of correction for each fiber transmission power loss in the array can effectively improve the salinity measurement accuracy. Experimental results indicate the feasibility of the developed system, and the measurement repeatability error is better than plusmn0.250/00 .
Keywords :
Gaussian distribution; charge-coupled devices; fibre optic sensors; measurement errors; optical arrays; optical fibre losses; refractive index measurement; Gauss distribution theory; beam deviation measurement; charge-coupled device; differential refractometer; fiber transmission power; fiber-optic array; light power fluctuation; light-spot center; measurement errors; optical fiber loss; optical salinity sensor system; refractive index; Gaussian distribution; Optical arrays; Optical fiber devices; Optical fiber sensors; Optical fiber theory; Optical refraction; Optical sensors; Sensor arrays; Sensor systems; Temperature measurement; Fiber-optic sensor; Gauss beam, salinity measurement; fiber array; transmission power loss;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2009.2026527
Filename :
5208665
Link To Document :
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