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Continuous and Damped Vibration Detection Based on Fiber Diversity Detection Sensor by Rayleigh Backscattering

机译:基于瑞利反向散射的光纤分集检测传感器的连续阻尼振动检测

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摘要

An optical fiber vibration sensor based on a polarization diversity scheme has been developed to study structural vibration properties under external disturbance. The polarization diversity scheme has improved signal-to-noise ratio (SNR) by over 13 dB with capability of detection frequency of sub-hertz to tens of kilohertz. The minimum dynamic strain we have detected is 3 n$varepsilon$, and the SNR of the sensor is ${>} $37 dB without any averaging. For the first time, Rayleigh backscattering has been utilized to detect continuous and damped vibration generated by a piezo fiber stretcher and vibrating cantilever with a frequency range of sub-hertz to 16 kHz. We also use this sensor and polarization analyzer to characterize the polarization state change and phase shift of the piezo fiber stretcher in transmission and Rayleigh backscattering up to kilohertz frequency, both results agrees quantitatively.
机译:已经开发出基于极化分集方案的光纤振动传感器,以研究外部干扰下的结构振动特性。极化分集方案将信噪比(SNR)提高了13 dB以上,并具有亚赫兹到数十千赫兹的检测频率。我们检测到的最小动态应变为3 nvarepsilon $,传感器的SNR为$ {>} $ 37 dB,无任何平均值。瑞利背向散射技术首次用于检测由压电纤维拉伸器和振动悬臂产生的连续振动和衰减振动,其频率范围为1赫兹至16 kHz。我们还使用此传感器和偏振分析仪来表征压电光纤拉伸器在传输和瑞利反向散射直至千赫兹频率时的偏振态变化和相移,这两个结果在定量上是一致的。

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