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Self-calibrated non-contact fibre-optic Fabry-Perot interferometric vibration displacement sensor system using laser emission frequency modulated phase generated carrier demodulation scheme

机译:利用激光发射频率调制相位生成载波解调方案的自校准非接触式光纤法布里-珀罗干涉振动位移传感器系统

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摘要

In this paper, the principle of a self-calibrated non-contact fibre-optic Fabry-Perot interferometric vibration displacement sensor (FOFPIVDS) system is described and experimentally demonstrated. According to the principle, the Fabry-Perot cavity, constituted by placing the end face of a gradient-index lens in parallel with the measured vibration surface, is used to translate the vibration displacement of the measured vibration surface into phase shifts in the interference signal output from the FOFPIVDS, and the laser emission frequency modulated phase generated carrier (FMPGC) demodulation scheme based on the arctangent (Arctan) algorithm is adapted to demodulate the phase shifts. After eliminating the optical power modulation in the laser emission frequency modulation, the sensing model for the FOFPIVDS system using the FMPGC-Arctan demodulation scheme is established. On these bases, the FOFPIVDS is designed and fabricated, and the prototyping FOFPIVDS system is built and experimentally tested. The research results indicate that the fabricated FOFPIVDS system possesses the characteristics as follows: (1) the sensitivity is only determined by the laser wavelength and the vibration displacement measurement is self-calibrated, (2) the nonlinearity is 0.29% and (3) the resolution is less than 2.06 nm.
机译:本文介绍了一种自校准非接触式光纤法布里-珀罗干涉振动位移传感器(FOFPIVDS)系统的原理,并进行了实验验证。根据原理,通过将梯度折射率透镜的端面与被测振动表面平行放置而构成的Fabry-Perot腔用于将被测振动表面的振动位移转换为干扰信号中的相移。 FOFPIVDS的输出,并且基于反正切(Arctan)算法的激光发射频率调制的相位生成载波(FMPGC)解调方案适用于解调相移。在消除了激光发射频率调制中的光功率调制之后,建立了使用FMPGC-Arctan解调方案的FOFPIVDS系统的感测模型。在这些基础上,设计并制造了FOFPIVDS,并构建了FOFPIVDS原型系统并进行了实验测试。研究结果表明,所制造的FOFPIVDS系统具有以下特点:(1)灵敏度仅由激光波长决定,振动位移测量是自校准的;(2)非线性度为0.29%;(3)分辨率小于2.06 nm。

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