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Twin-Core Fiber-Based Mach Zehnder Interferometer for Simultaneous Measurement of Strain and Temperature

机译:基于双芯光纤的马赫曾德尔干涉仪可同时测量应变和温度

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摘要

In this paper we present an all-fiber interferometric sensor for the simultaneous measurement of strain and temperature. It is composed of a specially fabricated twin-core fiber spliced between two pieces of a single-mode fiber. Due to the refractive index difference between the two cores in a twin-core fiber, a differential interference pattern is produced at the sensor output. The phase response of the interferometer to strain and temperature is measured in the 850–1250 nm spectral range, showing zero sensitivity to strain at 1000 nm. Due to the significant difference in sensitivities to both parameters, our interferometer is suitable for two-parameter sensing. The simultaneous response of the interferometer to strain and temperature was studied using the two-wavelength interrogation method and a novel approach based on the spectral fitting of the differential phase response. As the latter technique uses all the gathered spectral information, it is more reliable and yields the results with better accuracy.
机译:在本文中,我们提出了一种用于同时测量应变和温度的全光纤干涉传感器。它由特殊制造的双芯光纤组成,该光纤被拼接在两段单模光纤之间。由于双芯光纤中两个纤芯之间的折射率差异,在传感器输出端会产生差分干涉图样。干涉仪对应变和温度的相位响应是在850-1250 nm光谱范围内测得的,在1000 nm下对应变的灵敏度为零。由于对两个参数的灵敏度差异很大,因此我们的干涉仪适用于两参数感测。研究了干涉仪对应变和温度的同时响应,使用了两种波长的询问方法以及一种基于差分相位响应的频谱拟合的新方法。由于后一种技术使用了所有收集的光谱信息,因此它更加可靠,并且可以产生更高准确度的结果。

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