Coherent OTDR Based Ultra-High Sensitive Acoustic Sensor Assisted with Distributed Microstructured Optical Fiber(DMOF) and Hollow Cylinder Transducer

Hao Li, Fan Ai, Jingyi Wang, Wei Zhang, Z. Xing, Zhijun Yan, Deming Liu, Qizhen Sun
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引用次数: 1

Abstract

An ultra-high sensitive distributed microstructured optical fiber (DMOF) acoustic sensor based on coherent OTDR demodulation method and hollow cylinder transducer is presented. As a consecutive longitudinal microstructured optical fiber, the DMOF contains backscattering enhanced points which greatly improved the signal to noise ratio(SNR) of the acoustic sensing signal. Based on coherent OTDR demodulation method, the amount of phase change caused by sound pressure can be directly obtained. In order to increase the phase sensitivity, sensing fiber between two backscattering enhanced points along the DMOF is wrapped on a hollow cylinder transducer as an acoustic sensing unit. Finally, experiments on detecting sound waves in air are carried out. The results demonstrate that our fiber acoustic sensor has a flat sensitivity frequency response from 500Hz to 5kHz with a phase sensitivity of around -112dB(re rad/μPa) and a peak sensitivity of -83.7dB at 80Hz. It is noteworthy that the sensing mechanism based on the DMOF can be further extended to distributed acoustic sensing.
分布式微结构光纤和空心圆柱体传感器辅助的相干OTDR超高灵敏度声传感器
提出了一种基于OTDR相干解调方法和空心圆柱体换能器的超高灵敏度分布式微结构光纤(DMOF)声传感器。dof作为一种连续的纵向微结构光纤,含有后向散射增强点,大大提高了声传感信号的信噪比。基于相干OTDR解调方法,可以直接得到声压引起的相位变化量。为了提高相位灵敏度,将沿DMOF方向的两个后向散射增强点之间的传感光纤包裹在空心圆柱形换能器上作为声传感单元。最后,进行了空气中声波探测实验。结果表明,光纤声传感器在500Hz ~ 5kHz范围内具有平坦的灵敏度频率响应,相位灵敏度约为-112dB(re rad/μPa), 80Hz时的峰值灵敏度为-83.7dB。值得注意的是,基于DMOF的传感机制可以进一步扩展到分布式声传感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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