Clarification of strain-temperature cross-sensitivity effect on Brillouin frequency shift in plastic optical fibers

K. Minakawa, Y. Mizuno, Kentaro Nakamura
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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%.
塑料光纤中应变-温度交叉灵敏度对布里渊频移的影响
研究了塑料光纤中布里渊频移(BFS)的应变-温度交叉灵敏度效应。首先,我们证明了BFS的应变系数与温度有关。在0 ~ 1.2%和4.0 ~ 9.0%的应变范围内,温度相关性为线性关系,系数分别为1.5 MHz/%/°C和- 0.4 MHz/%/°C。我们发现,在0 ~ 1.2%的应变范围内,BFS的温度系数与应变呈线性关系,系数为1.5 MHz/°C/%。对于4.0 ~ 9.0%菌株,BFS基本随温度升高而降低。这些结果表明,在基于pof的布里渊传感中,需要对BFS的应变(和温度)灵敏度进行温度(和应变)补偿,以正确检测应变和温度幅度。我们还表明,使用预应变>13%的POFs,对应变不敏感的温度传感是潜在可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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