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The Analysis of FBG Central Wavelength Variation with Crack Propagation Based on a Self-Adaptive Multi-Peak Detection Algorithm

机译:基于自适应多峰检测算法的裂纹扩展的光纤光栅中心波长变化分析

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摘要

We propose a peak seeking algorithm to extract the damage characteristic-variation of central wavelength to monitor the crack damage status in aluminum alloy plates using surface bonded fiber Bragg grating (FBG) sensors. The FBG sensors are sensitive to the uniform and non-uniform strain distribution along their longitudinal direction, and the effect appears in the power spectrum of the reflected light from the gauge section. In this paper, we propose a fast-self-adaptive multi-peak seeking algorithm to detect the central wavelength shifting of the FBG reflection spectrum with the crack propagation. The proposed peak searching algorithm results point to a significant improvement compared to other conventional methods. Then the central wavelength shifting is applied to explain the crack propagation behavior of the aluminum plates under quasi-static tensile test conditions. The different damages feature changing intervals which are associated with the crack position and the FBGs location, demonstrating that central wavelength shifting performs as an indicator to detect structural crack damage.
机译:我们提出了一种峰值寻找算法,以提取中心波长的损伤特性变化,以使用表面粘结光纤布拉格光栅(FBG)传感器监测铝合金板中的裂纹损伤状态。 FBG传感器对沿其纵向均匀和不均匀的应变分布敏感,并且该影响出现在来自量规部分的反射光的功率谱中。在本文中,我们提出了一种快速自适应的多峰搜索算法,以检测随着裂纹扩展而出现的FBG反射光谱的中心波长偏移。提出的峰值搜索算法结果表明与其他常规方法相比有显着改进。然后应用中心波长偏移来解释铝板在准静态拉伸试验条件下的裂纹扩展行为。不同的损伤具有与裂缝位置和FBG位置相关的变化间隔,这表明中心波长偏移可作为检测结构裂缝损伤的指标。

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