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High sensitivity Fabry-Perot interferometer based on offset splicing fibers and Vernier effect for strain measurement

机译:基于偏移拼接光纤和游标效应的高灵敏度Fabry-Perot干涉仪,用于应变测量

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An all-fiber Fabry-Perot interferometer (FPI) strain sensor based on offset splicing fibers and Vernier effect is proposed and experimentally demonstrated. The proposed sensor consists of two separated air-cavity FPIs connected by a long section of single mode fiber (SMF) in a fiber link. The two separated FPIs have approximately equal optical paths, so that the Vernier effect can be generated. One FPI is used as the sensing FPI (SFPI) for strain measurement, which is formed by splicing a section of microfiber between two SMFs with large lateral offset. The other FPI is used as the reference FPI (RFPI) to employ the Vernier effect and amplify the sensitivity, which is formed by splicing a section of silica tube between two SMFs. Compared to a single FPI based sensor, the strain sensitivity of the proposed sensor with Vernier effect can be improved by tens of times. The strain sensitivity of our proposed sensor reaches 1.3 nm/ με, which is the highest strain sensitivity of fiber sensor based on FPI and wavelength demodulation mechanism. Since the air-cavity SFPI is insensitive to temperature, the proposed sensor also exhibits low temperature sensitivity of 50.2 pm/°C. With the advantages of high strain sensitivity, low temperature cross-sensitivity, compact size and easy fabrication, the proposed sensor has great applications in many fields.
机译:提出了一种基于偏移拼接光纤和游标效应的全光纤法布里-珀罗干涉仪(FPI)应变传感器,并进行了实验验证。所提出的传感器由两个分开的气孔FPI组成,这些FPI通过光纤链路中较长的单模光纤(SMF)连接。两个分离的FPI具有近似相等的光路,因此可以产生游标效应。一个FPI用作应变测量的传感FPI(SFPI),是通过在两个具有较大横向偏移的SMF之间拼接一段超细纤维而形成的。另一个FPI用作参考FPI(RFPI),以利用Vernier效应并放大灵敏度,这是通过在两个SMF之间拼接硅胶管部分而形成的。与基于单个FPI的传感器相比,所提出的具有游标效应的传感器的应变灵敏度可以提高数十倍。我们提出的传感器的应变灵敏度达到1.3 nm /με,这是基于FPI和波长解调机制的光纤传感器的最高应变灵敏度。由于气孔SFPI对温度不敏感,因此建议的传感器还具有50.2 pm /°C的低温灵敏度。由于具有高应变敏感度,低温交叉敏感度,紧凑的尺寸和易于制造的优点,所提出的传感器在许多领域中具有广泛的应用。

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