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Measurement of Microvibration by Using Dual-Cavity Fiber Fabry-Perot Interferometer for Structural Health Monitoring

机译:使用双腔光纤法布里-珀罗干涉仪测量微振动以进行结构健康监测

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Extensive researches have recently been performed to study structural integrity using structural vibration data measured by in-structure sensors. A fiber optic sensor is one of candidates for the in-structure sensors because it is low in cost, light in weight, small in size, resistant to EM interference, long in service life, and so forth. Especially, an interferometric fiber optic sensor is very useful to measure vibrations with high resolution and accuracy. In this paper, a dual-cavity fiber Fabry-Perot interferometer was proposed with a phase-compensating algorithm for measuring micro-vibration. The interferometer has structurally two arbitrary cavities; therefore the initial phase difference between two sinusoidal signals induced from the interferometer was also arbitrary. In order to do signal processing including an arc-tangent method, a random value of the initial phase difference is automatically adjusted to the exact 90 degrees in the phase-compensating algorithm part. For the verification of the performance of the interferometer, a simple vibration-test was performed to measure micro-vibration caused by piezoelectric transducer (PZT). As an experimental result, the interferometer attached on the PZT successfully measured the 50 Hz-vibration of which the absolute displacement oscillated between −424 nm and +424 nm.
机译:最近已经进行了广泛的研究,以使用由结构内传感器测量的结构振动数据来研究结构完整性。光纤传感器是结构内传感器的候选者之一,因为它具有成本低,重量轻,尺寸小,抗电磁干扰,使用寿命长等优点。尤其是,干涉式光纤传感器对于以高分辨率和精度测量振动非常有用。本文提出了一种双腔光纤法布里-珀罗干涉仪,其具有相位补偿算法来测量微振动。干涉仪在结构上有两个任意的腔;因此,由干涉仪产生的两个正弦信号之间的初始相位差也是任意的。为了进行包括反正切法的信号处理,在相位补偿算法部分中,将初始相位差的随机值自动调整为精确的90度。为了验证干涉仪的性能,执行了简单的振动测试,以测量由压电换能器(PZT)引起的微振动。作为实验结果,安装在PZT上的干涉仪成功地测量了50 Hz振动,其绝对位移在-424 nm和+424 nm之间振荡。

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