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Strain wave acquisition by a fiber optic coherent sensor for impact monitoring

机译:光纤相干传感器采集应变波以进行冲击监测

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摘要

A novel fiber optic sensing technology for high frequency dynamics detection is proposed in this paper, specifically tailored for structural health monitoring applications based on strain wave analysis, for both passive impact identification and active Lamb wave monitoring. The sensing solution relies on a fiber optic-based interferometric architecture associated to an innovative coherent detection scheme, which retrieves in a completely passive way the high-frequency phase information of the received optical signal. The sensing fiber can be arranged into different layouts, depending on the requirement of the specific application, in order to enhance the sensor sensitivity while still ensuring a limited gauge length if punctual measures are required. For active Lamb wave monitoring, this results in a sensing fiber arranged in multiple loops glued on an aluminum thin panel in order to increase the phase signal only in correspondence to the sensing points of interest. Instead, for passive impact identification, the required sensitivity is guaranteed by simply exploiting a longer gauge length glued to the structure. The fiber optic coherent (FOC) sensor is exploited to detect the strain waves emitted by a piezoelectric transducer placed on the aluminum panel or generated by an impulse hammer, respectively. The FOC sensor measurements have been compared with both a numerical model based on Finite Elements and traditional piezoelectric sensors, confirming a good agreement between experimental and simulated results for both active and passive impact monitoring scenarios.
机译:本文提出了一种用于高频动态检测的新型光纤传感技术,该技术专为基于应变波分析的结构健康监测应用而量身定制,用于被动冲击识别和主动兰姆波监测。传感解决方案依赖于与创新相干检测方案相关联的基于光纤的干涉仪架构,该方案以完全无源的方式检索接收到的光信号的高频相位信息。根据特定应用的要求,可以将传感光纤布置成不同的布局,以提高传感器的灵敏度,同时如果需要采取针刺措施,仍然可以确保有限的线规长度。对于有源兰姆波监测,这导致将传感光纤布置成多个环路,这些环路粘贴在铝薄板上,以便仅根据感兴趣的传感点来增加相位信号。取而代之的是,对于被动冲击识别,只需利用胶粘在结构上的较长标距即可保证所需的灵敏度。光纤相干(FOC)传感器用于检测由放置在铝板上的压电换能器发出或由冲击锤产生的应变波。 FOC传感器的测量值已与基于有限元的数值模型和传统的压电传感器进行了比较,从而确认了主动和被动冲击监测方案的实验结果和模拟结果之间的良好一致性。

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