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A High-Resolution Demodulation Algorithm for FBG-FP Static-Strain Sensors Based on the Hilbert Transform and Cross Third-Order Cumulant

机译:基于希尔伯特变换和交叉三阶累积量的FBG-FP静态应变传感器的高分辨率解调算法

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摘要

Static strain can be detected by measuring a cross-correlation of reflection spectra from two fiber Bragg gratings (FBGs). However, the static-strain measurement resolution is limited by the dominant Gaussian noise source when using this traditional method. This paper presents a novel static-strain demodulation algorithm for FBG-based Fabry-Perot interferometers (FBG-FPs). The Hilbert transform is proposed for changing the Gaussian distribution of the two FBG-FPs’ reflection spectra, and a cross third-order cumulant is used to use the results of the Hilbert transform and get a group of noise-vanished signals which can be used to accurately calculate the wavelength difference of the two FBG-FPs. The benefit by these processes is that Gaussian noise in the spectra can be suppressed completely in theory and a higher resolution can be reached. In order to verify the precision and flexibility of this algorithm, a detailed theory model and a simulation analysis are given, and an experiment is implemented. As a result, a static-strain resolution of 0.9 nε under laboratory environment condition is achieved, showing a higher resolution than the traditional cross-correlation method.
机译:可以通过测量来自两个光纤布拉格光栅(FBG)的反射光谱的互相关来检测静态应变。但是,使用这种传统方法时,静态应变测量分辨率受到占主导地位的高斯噪声源的限制。本文提出了一种新的基于FBG的Fabry-Perot干涉仪(FBG-FPs)的静态应变解调算法。提出使用希尔伯特变换来改变两个FBG-FP的反射光谱的高斯分布,并使用一个交叉的三阶累积量来使用希尔伯特变换的结果并获得一组可用于消除噪声的信号以准确计算两个FBG-FP的波长差。这些过程的好处是,理论上可以完全抑制光谱中的高斯噪声,并且可以获得更高的分辨率。为了验证该算法的准确性和灵活性,给出了详细的理论模型和仿真分析,并进行了实验。结果,在实验室环境条件下实现了0.9nε的静态应变分辨率,显示出比传统互相关方法更高的分辨率。

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