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Influence of Fiber Bragg Grating Spectrum Degradation on the Performance of Sensor Interrogation Algorithms

机译:光纤布拉格光栅光谱退化对传感器询问算法性能的影响

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摘要

The working principle of fiber Bragg grating (FBG) sensors is mostly based on the tracking of the Bragg wavelength shift. To accomplish this task, different algorithms have been proposed, from conventional maximum and centroid detection algorithms to more recently-developed correlation-based techniques. Several studies regarding the performance of these algorithms have been conducted, but they did not take into account spectral distortions, which appear in many practical applications. This paper addresses this issue and analyzes the performance of four different wavelength tracking algorithms (maximum detection, centroid detection, cross-correlation and fast phase-correlation) when applied to distorted FBG spectra used for measuring dynamic loads. Both simulations and experiments are used for the analyses. The dynamic behavior of distorted FBG spectra is simulated using the transfer-matrix approach, and the amount of distortion of the spectra is quantified using dedicated distortion indices. The algorithms are compared in terms of achievable precision and accuracy. To corroborate the simulation results, experiments were conducted using three FBG sensors glued on a steel plate and subjected to a combination of transverse force and vibration loads. The analysis of the results showed that the fast phase-correlation algorithm guarantees the best combination of versatility, precision and accuracy.
机译:光纤布拉格光栅(FBG)传感器的工作原理主要基于对布拉格波长偏移的跟踪。为了完成该任务,已经提出了不同的算法,从常规的最大和质心检测算法到最近开发的基于相关性的技术。已经进行了关于这些算法的性能的一些研究,但是它们没有考虑在许多实际应用中出现的频谱失真。本文针对此问题进行了分析,并分析了四种不同的波长跟踪算法(最大检测,质心检测,互相关和快速相位相关)在应用于失真的FBG光谱以测量动态负载时的性能。仿真和实验都用于分析。使用转移矩阵方法模拟了变形的FBG光谱的动态行为,并使用专用的变形指标对光谱的变形量进行了量化。根据可实现的精度和准确性对算法进行比较。为了证实模拟结果,使用了三个粘合在钢板上的FBG传感器进行了实验,这些传感器受到了横向力和振动载荷的共同作用。结果分析表明,快速相位相关算法保证了多功能性,精度和准确性的最佳组合。

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