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Review and Analysis of Peak Tracking Techniques for Fiber Bragg Grating Sensors

机译:光纤布拉格光栅传感器峰值跟踪技术的回顾与分析

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摘要

Fiber Bragg Grating (FBG) sensors are among the most popular elements for fiber optic sensor networks used for the direct measurement of temperature and strain. Modern FBG interrogation setups measure the FBG spectrum in real-time, and determine the shift of the Bragg wavelength of the FBG in order to estimate the physical parameters. The problem of determining the peak wavelength of the FBG from a spectral measurement limited in resolution and noise, is referred as the peak-tracking problem. In this work, the several peak-tracking approaches are reviewed and classified, outlining their algorithmic implementations: the methods based on direct estimation, interpolation, correlation, resampling, transforms, and optimization are discussed in all their proposed implementations. Then, a simulation based on coupled-mode theory compares the performance of the main peak-tracking methods, in terms of accuracy and signal to noise ratio resilience.
机译:光纤布拉格光栅(FBG)传感器是用于直接测量温度和应变的光纤传感器网络中最受欢迎的元件之一。现代的FBG询问设置可实时测量FBG光谱,并确定FBG的布拉格波长的偏移量,以便估算物理参数。从分辨率和噪声受限的光谱测量中确定FBG的峰值波长的问题称为峰值跟踪问题。在这项工作中,对几种峰值跟踪方法进行了回顾和分类,概述了它们的算法实现:在所有建议的实现中都讨论了基于直接估计,内插,相关,重采样,变换和优化的方法。然后,基于耦合模式理论的仿真在准确性和信噪比弹性方面比较了主要峰跟踪方法的性能。

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