DocumentCode :
79183
Title :
Polymer Optical Fiber Continuous Liquid Level Sensor for Dynamic Measurement
Author :
Hui-Xin Zhang ; Yu-Long Hou ; Li-Shuang Feng ; Shan Su ; Jia-Wei Zhang ; Jia Liu ; Wen-Yi Liu ; Jun Liu ; Ji-Jun Xiong
Author_Institution :
Key Lab. of Instrum. Sci. & Dynamic Meas., North Univ. of China, Taiyuan, China
Volume :
15
Issue :
9
fYear :
2015
fDate :
Sept. 2015
Firstpage :
5238
Lastpage :
5242
Abstract :
The effect of cladding mode frustrated total internal reflection (CMFTIR) in macrobend polymer optical fiber is first used to achieve continuous liquid-level dynamic sensing. However, the difficulty is that the CMFTIR sensing signal is so weak as to be drowned into background noises. To solve this problem, the sensors with the parallel (twisted) helical macrobend coupling structure (PHMBCS and THMBCS) are designed to obtain dark-filed coupling signal which is found to be excellent on signal-to-noise ratio. The experiment shows that the sensor can dynamically measure the continuous change of water level, and the curve tracks are related to the speed of water flow. The result offers the possibility to calculate the real-time speeds of the level change. The measurement range of PHMBCS is 70 mm, and THMBCS reaches 350 mm. Better linearity is realized using THMBCS. The average level resolutions of the sensors with two structures are both less than 0.3 mm, and the measurement results show a very good consistency. The sensor, which has a good prospect of application, meets the needs of dynamic measurement of liquid level, especially under complicated electromagnetic and flammable environment.
Keywords :
fibre optic sensors; level measurement; light reflection; optical fibre cladding; optical fibre couplers; optical polymers; CMFTIR sensing signal; PHMBCS; THMBCS; cladding mode frustrated total internal reflection; continuous liquid-level dynamic sensing; dark-filed coupling signal; distance 350 mm; distance 70 mm; electromagnetic environment; flammable environment; macrobend polymer optical fiber; parallel helical macrobend coupling structure; polymer optical fiber continuous liquid level sensor; signal-to-noise ratio; twisted helical macrobend coupling structure; water level measurement; Couplings; Liquids; Optical fiber sensors; Optical fibers; Temperature measurement; Temperature sensors; Cladding mode; dynamic measurement; frustrated total internal reflection; liquid level measurement; optical fiber sensor; polymer optical fiber;
fLanguage :
English
Journal_Title :
Sensors Journal, IEEE
Publisher :
ieee
ISSN :
1530-437X
Type :
jour
DOI :
10.1109/JSEN.2015.2438153
Filename :
7113788
Link To Document :
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