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Correlation-based methods in calibrating an FBG sensor with strain field non-uniformity

机译:校正应变场不均匀的FBG传感器的基于相关方法

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Fibre Bragg gratings have many sensing applications, mainly for measuring strain and temperature. The physical quantity that influences grating uniformly along its length causes a related shift of the Bragg wavelength. Many peak detection algorithms have been proposed, among which the most popular are the detection of maximum intensity, the centroid detection, the least square method, the cross-correlation, auto-correlation and fast phase correlation. Non-uniform gratings elongation is a cause of spectrum deformation. The introduction of non-uniformity can be intentional or appear as an unintended effect of placing sensing elements in the tested structure. Heterogeneous impacts on grating may result in additional errors and the difficulty in tracking the Bragg wavelength based on a distorted spectrum. This paper presents the application of correlation methods of peak wavelength shifts estimation for non-uniform Bragg grating elongation. The autocorrelation, cross-correlation and fast phase correlation algorithms are considered and experimental spectra measured for axisymmetric strain field along the Bragg grating are analyzed. The strain profile consists of constant and variable components. The results of this study indicate the properties of correlation algorithms applied to moderately non-uniform elongation of an FBG sensor.
机译:光纤布拉格光栅具有许多传感应用,主要用于测量应变和温度。影响其长度均匀地光栅的物理量导致布拉格波长的相关偏移。已经提出了许多峰值检测算法,其中最受欢迎的是检测最大强度,质心检测,最小二乘法,互相关,自相关和快速相位相关性。不均匀的光栅伸长是光谱变形的原因。不均匀性的引入可以是有意的,也可以作为在测试结构中放置感测元件的意外效果。对光栅的异质冲击可能导致额外的误差和基于扭曲光谱跟踪布拉格波长的难度。本文介绍了峰值波长移位估计的相关方法对非均匀布拉格光栅伸长率的应用。考虑自相关,互相关和快速相位相关算法,分析了沿布拉格光栅的轴对称应变场测量的实验光谱。应变型材由恒定和可变组件组成。该研究的结果表明了应用于适度的FBG传感器的中间不均匀伸长的相关算法的性能。

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