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A curvature based approach using long-gage fiber optic sensors

机译:使用长距离光纤传感器的基于曲率的方法

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Fiber Bragg grating (FBG) sensors offer a significant advantage for structural health monitoring due to their ability to simultaneously monitor both static and dynamic strain while being durable, lightweight, capable of multiplexing, and immune to electro-magnetic interference. Drawing upon the benefits of FBG sensors, this research explores the use of a series of long-gage fiber optic sensors for damage detection of a structure through dynamic strain measurements and curvature analysis. Typically structural monitoring relies upon detecting structural changes through frequency and acceleration based analysis. However, curvature and strain based analysis may be a more reliable means for structural monitoring as they show more sensitivity to damage compared to modal parameters such as displacement mode shapes and natural frequency. Additionally, long gage FBG strain sensors offer a promising alternative to traditional dynamic measurement methods as the curvature can be computed directly from the FBG strain measurements without the need for numerical differentiation. Small scale experimental testing was performed using an aluminum beam instrumented with a series of FBG optical fiber sensors. Dynamic strain measurements were obtained as the aluminum beam was subjected to various loading and support conditions. From this, a novel normalized parameter based on the curvature from the dynamic strain measurements has been identified as a potential damage sensitive feature. Theoretical predictions and experimental data were compared and conclusions carried out. The results demonstrated the potential of the novel normalized parameter to facilitate dynamic monitoring at both the local and global scale, thus allowing assessment of the structures health.
机译:光纤布拉格光栅(FBG)传感器具有结构健康监测的显着优势,因为它们能够同时监测静态和动态应变,同时又耐用,轻巧,能够多路复用并且不受电磁干扰。利用FBG传感器的优势,本研究探索了使用一系列长距离光纤传感器通过动态应变测量和曲率分析来检测结构的损伤。通常,结构监测依赖于通过基于频率和加速度的分析来检测结构变化。但是,基于曲率和应变的分析可能是一种更可靠的结构监测方法,因为与模式参数(如位移模式形状和固有频率)相比,它们对损伤更敏感。此外,长规FBG应变传感器提供了一种有希望的替代传统动态测量方法的方法,因为可以直接从FBG应变测量中计算出曲率,而无需进行数值微分。使用装有一系列FBG光纤传感器的铝梁进行了小规模的实验测试。当铝梁经受各种载荷和支撑条件时,获得了动态应变测量结果。由此,基于动态应变测量的曲率的新型归一化参数已被识别为潜在的损伤敏感特征。对理论预测和实验数据进行了比较,得出结论。结果表明,新型标准化参数有助于在本地和全球范围内进行动态监控的潜力,从而可以评估结构的健康状况。

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