DocumentCode
110022
Title
Fiber-Optic Anemometer Based on Distributed Bragg Reflector Fiber Laser Technology
Author
Yun Liu ; Wei Peng ; Xinpu Zhang ; Yuzhang Liang ; Zhenfeng Gong ; Ming Han
Author_Institution
Coll. of Phys. & Optoelectron. Eng., Dalian Univ. of Technol., Dalian, China
Volume
25
Issue
13
fYear
2013
fDate
1-Jul-13
Firstpage
1246
Lastpage
1249
Abstract
We present a novel fiber-optic anemometer based on a distributed Bragg reflector (DBR) fiber laser. The anemometer consists of a fiber laser pressure sensing element and a Venturi tube designed to convert the wind velocity into differential gas pressure that can be measured by the fiber-laser sensor. A DBR fiber laser that has two polarization modes is designed and fabricated as the major sensing element in this anemometer. The fiber-laser sensor is demodulated by the beat frequency of the two polarization modes, which has higher sensitivity and lower cost over wavelength-demodulated fiber-laser sensors. The experimental results show that the sensor´s response to wind velocity is quadratic in the measurement range of 8 ~ 40 m/s, the short term repeatability is better than 0.5%, and its sensitivity is impacted by the power of pump laser. Additionally, this anemometer has the potential capability to be used as a flow meter for both gas and liquid flows.
Keywords
anemometers; distributed Bragg reflector lasers; fibre lasers; fibre optic sensors; laser modes; measurement by laser beam; optical design techniques; optical fibre fabrication; optical fibre polarisation; optical pumping; pressure measurement; pressure sensors; DBR fiber laser; Venturi tube; beat frequency; differential gas pressure; distributed Bragg reflector fiber laser technology; fiber laser pressure sensing element; fiber-laser sensor; fiber-optic anemometer; flow meter; gas flow; liquid flow; polarization modes; pump laser power; wind velocity; Optical fiber lasers; anemometers; frequency measurement;
fLanguage
English
Journal_Title
Photonics Technology Letters, IEEE
Publisher
ieee
ISSN
1041-1135
Type
jour
DOI
10.1109/LPT.2013.2263221
Filename
6542687
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