DocumentCode
2144351
Title
Optical fiber temperature sensor based on phase shift by aluminum thermal expansion
Author
Jin-Maun Ho ; Shiu, M.T.
Author_Institution
Dept. of Electr. Eng., Chung-Yuan Univ., Chung-Li, Taiwan
Volume
3
fYear
1993
fDate
19-21 Oct. 1993
Firstpage
500
Abstract
The method of using aluminum tube wound by single-mode fiber as a temperature sensor is proposed. The optical source of this temperature sensing system is a 2-frequency He-Ne laser. When the temperature of fiber on aluminum is changed, a phase shift in optical signal will appear. By using electronic circuits, this phase shift can be detected and compared with a reference signal which is obtained directly from the laser source. Then one can obtain information on temperature according to the difference of phases between these two signals. Two experiments have been performed in the laboratory. In the first experiment the aluminum tube is 12 cm in diameter, 8 cm in height, and 2 mm in thickness, with a fiber length about 60 m wounded 155 turns. The sensitivity is 2.1/spl times/10/sup -2/ rad//spl deg/C-m. In the second experiment, the tube is 7.5 cm in diameter and height, and 2 mm in thickness, with a fiber about 10 m length wounded in 21 turns. The sensitivity is 4.9/spl times/10/sup -2/ rad//spl deg/C-m. The temperature from 5/spl deg/C to 80/spl deg/C is measured with this design.<>
Keywords
aluminium; fibre optic sensors; laser beam applications; optical fibres; signal detection; temperature measurement; thermal expansion; thermometers; 5 to 80 degC; Al thermal expansion; He; He-Ne; Ne; optical fiber temperature sensor; optical signal; phase shift; sensitivity; two-frequency He-Ne laser; Aluminum; Electronic circuits; Fiber lasers; Laboratories; Optical fiber sensors; Optical fibers; Optical sensors; Phase detection; Temperature sensors; Wounds;
fLanguage
English
Publisher
ieee
Conference_Titel
TENCON '93. Proceedings. Computer, Communication, Control and Power Engineering.1993 IEEE Region 10 Conference on
Conference_Location
Beijing, China
Print_ISBN
0-7803-1233-3
Type
conf
DOI
10.1109/TENCON.1993.328034
Filename
328034
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