Paper
23 April 2017 Clarification of strain-temperature cross-sensitivity effect on Brillouin frequency shift in plastic optical fibers
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Proceedings Volume 10323, 25th International Conference on Optical Fiber Sensors; 103238U (2017) https://doi.org/10.1117/12.2267288
Event: 25th International Conference on Optical Fiber Sensors, 2017, Jeju, Korea, Republic of
Abstract
The strain-temperature cross-sensitivity effect on Brillouin frequency shift (BFS) in plastic optical fibers (POFs) is fully investigated. First, we show that the strain coefficient of the BFS is dependent on temperature. In the strain ranges of 0– 1.2% and 4.0–9.0%, the temperature dependence is linear with coefficients of 1.5 MHz/%/°C and –0.4 MHz/%/°C, respectively. We then find that the temperature coefficient of the BFS is linearly dependent on strain with a coefficient of 1.5 MHz/°C/% in the strain range from 0 to 1.2%. For 4.0–9.0% strains, the BFS basically decreases with increasing temperature. These results indicate that temperature (and strain) compensation for the strain (and temperature) sensitivity of the BFS is required to correctly detect the strain and temperature magnitude in POF-based Brillouin sensing. We also show that temperature sensing with no sensitivity to strain is potentially feasible by using POFs pre-strained for >13%.
© (2017) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Kazunari Minakawa, Yosuke Mizuno, and Kentaro Nakamura "Clarification of strain-temperature cross-sensitivity effect on Brillouin frequency shift in plastic optical fibers", Proc. SPIE 10323, 25th International Conference on Optical Fiber Sensors, 103238U (23 April 2017); https://doi.org/10.1117/12.2267288
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KEYWORDS
Polymer optical fibers

Temperature metrology

Scattering

Silica

Single mode fibers

Optical amplifiers

Optical fibers

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