Simultaneous and quasi-independent strain and temperature sensor based on microstructured optical fiber

A. L. Aldaba, J. Auguste, R. Jamier, P. Roy, M. López-Amo
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引用次数: 2

Abstract

In this paper, a new sensor system for simultaneous and quasi-independent strain and temperature measurements is presented. The interrogation of the sensing head has been carried out by monitoring the FFT phase variations of two of the microstructured optical fiber (MOF) cavity interference frequencies. This method is independent of the signal amplitude and also avoids the need to track the wavelength evolution in the spectrum, which can be a handicap when there are multiple interference frequency components with different sensitivities. The sensor is operated within a range of temperature of 30°C–75°C, and 380με of maximum strain were applied; being the sensitivities achieved of 127.5pm/°C and −19.1pm/με respectively. Because the system uses an optical interrogator as unique active element, the system presents a cost-effective feature.
基于微结构光纤的同步准独立应变温度传感器
本文提出了一种可同时测量应变和温度的准独立传感器系统。通过监测两个微结构光纤(MOF)腔干涉频率的FFT相位变化,对传感头进行了检测。该方法与信号幅度无关,也避免了在频谱中跟踪波长演变的需要,当存在多个不同灵敏度的干扰频率分量时,这可能是一个障碍。传感器工作温度范围为30℃~ 75℃,最大应变为380με;灵敏度分别为127.5pm/°C和- 19.1pm/με。由于系统采用光询问器作为唯一的有源元件,因此系统具有经济高效的特点。
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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