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基于超弱啁啾光纤布拉格光栅阵列的同时分布式声温和传感系统。

Simultaneous distributed acoustic and temperature sensing system based on ultra-weak chirped fiber Bragg grating array.

出版信息

Opt Express. 2023 May 22;31(11):18516-18524. doi: 10.1364/OE.487205.

Abstract

The quasi-static temperature and dynamic acoustic signals based on ultra-weak chirped fiber Bragg grating (CFBG) array is proposed and experimentally demonstrated, which can be employed to detect distributed acoustic and temperature signals simultaneously. Distributed temperature sensing (DTS) was realized by cross-correlation operation to measure the spectral drift of each CFBG, and distributed acoustic sensing (DAS) was achieved by gauging the phase difference between adjacent CFBG. Using CFBG as the sensor unit can protect acoustic signals from the fluctuations and drifts induced by temperature change without deterioration of signal-to-noise ratio (SNR). Applying least square mean adaptive filter (AF) can enhance harmonic frequency suppression ratio and increase the SNR of system. In the proof-of-concept experiment the SNR of acoustic signal is higher than 100 dB after the digital filter and frequency response is from 2 Hz to 1.25 kHz with repetition frequency of laser pulses of 10 kHz. Temperature measurement from 30°C to 100°C is achieved with demodulation accuracy of ±0.8°C. The spatial resolution (SR) of two-parameter sensing is 5 m.

摘要

基于超弱啁啾光纤布拉格光栅(CFBG)阵列的准静态温度和动态声信号被提出并进行了实验验证,可用于同时检测分布式声和温度信号。通过互相关操作实现分布式温度传感(DTS)以测量每个 CFBG 的光谱漂移,通过测量相邻 CFBG 之间的相位差实现分布式声传感(DAS)。使用 CFBG 作为传感器单元可以保护声信号免受由温度变化引起的波动和漂移的影响,而不会降低信噪比(SNR)。应用最小二乘均值自适应滤波器(AF)可以提高谐波频率抑制比并提高系统的 SNR。在概念验证实验中,经过数字滤波器后声信号的 SNR 高于 100 dB,频率响应从 2 Hz 到 1.25 kHz,激光脉冲重复频率为 10 kHz。实现了从 30°C 到 100°C 的温度测量,解调精度为±0.8°C。双参数传感的空间分辨率(SR)为 5 m。

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