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基于实验因子设计的峰值跟踪方法对光纤布拉格光栅标定的影响。

Effect of Peak Tracking Methods on FBG Calibration Derived by Factorial Design of Experiment.

机构信息

Electromagnetism and Telecommunication Department, University of Mons, 7000 Mons, Belgium.

Department of Computer Science, California State University-Dominguez Hills (CSUDH), Carson, CA 90747, USA.

出版信息

Sensors (Basel). 2021 Sep 14;21(18):6169. doi: 10.3390/s21186169.

Abstract

We present a calibration procedure for a humidity sensor made of a fiber Bragg grating covered by a polyimide layer. FBGs being intrinsically sensitive to temperature and strain, the calibration should tackle three variables, and, therefore, consists of a three-variable, two-level factorial design tailored to assess the three main sensitivities, as well as the five cross-sensitivities. FBG sensing information is encoded in the reflection spectrum from which the Bragg wavelength should be extracted. We tested six classical peak tracking methods on the results of the factorial design of the experiment applied to a homemade FBG humidity sensor. We used Python programming to compute, from the raw spectral data with six typical peak search algorithms, the temperature, strain and humidity sensitivities, as well as the cross-sensitivities, and showed that results are consistent for all algorithms, provided that the points selected to make the computation are correctly chosen. The best results for this particular sensor are obtained with a 3 dB threshold, whatever the peak search method used, and allow to compute the effective humidity sensitivity taking into account the combined effect of temperature and strain. The calibration procedure presented here is nevertheless generic and can thus be adapted to other sensors.

摘要

我们提出了一种用于光纤布拉格光栅(FBG)传感器的校准程序,该传感器由覆盖有聚酰亚胺层的光纤布拉格光栅组成。由于 FBG 本质上对温度和应变敏感,因此校准应处理三个变量,因此,校准程序由三变量、两水平析因设计组成,旨在评估三个主要灵敏度以及五个交叉灵敏度。FBG 传感信息编码在反射光谱中,应从该反射光谱中提取布拉格波长。我们在应用于自制 FBG 湿度传感器的实验析因设计的结果上测试了六种经典的峰值跟踪方法。我们使用 Python 编程从原始光谱数据和六种典型的峰值搜索算法中计算出温度、应变和湿度灵敏度以及交叉灵敏度,并表明,只要选择用于计算的点选择正确,所有算法的结果都是一致的。对于这个特定的传感器,无论使用哪种峰值搜索方法,3dB 阈值都能获得最佳结果,并允许考虑温度和应变的综合影响来计算有效湿度灵敏度。这里提出的校准程序是通用的,因此可以适应其他传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c6f/8472398/1585035b30ea/sensors-21-06169-g001.jpg

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