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使用相敏光学分布式传感器的高分辨率和大测量范围液位测量

High resolution and large sensing range liquid level measurement using phase-sensitive optic distributed sensor.

作者信息

Liu Qi, Liu Tao, He Tao, Li Hao, Yan Zhijun, Zhang Lin, Sun Qizhen

出版信息

Opt Express. 2021 Apr 12;29(8):11538-11547. doi: 10.1364/OE.412935.

Abstract

Liquid level sensor with large sensing range and high-resolution is essential for the application of industry monitoring. In this work, a distributed optical fiber liquid level sensor is proposed and demonstrated based on phase-sensitive optical time domain reflectometry (φ-OTDR). In the basic of the thermal optic effect, the temperature change will induce the fluctuation of the effective refractive indexes of the fiber core, as well as the fluctuation of the optical path of the light transmitting in the fiber. Therefore, the φ-OTDR can detect the liquid level with a large measurement range by interrogating the phase information along the fiber due to the temperature difference between the liquid and air. Further, the scattering enhanced optical fiber (SEOF) is used as the sensing fiber to improve the signal to noise ratio (SNR) of the phase signal. Moreover, a high sensitivity liquid level sensing head by wrapping the SEOF on a heat conductive cylinder is designed and optimized to improve the sensing resolution. In the experiment, the proposed distributed liquid level sensor presents a high sensitivity of 73.4 rad/mm, corresponding to a competitive liquid level resolution of 142μm based on the noise floor of 10.4 rad within 160 s. The field test validates a large sensing range of 20 cm which is limited by the cylinder length, while a potential sensing range could reach 320 m with the sensing fiber of 40 km, proving a dynamic range of 127.1 dB. The proposed liquid level sensor with large dynamic range and high sensing resolution can benefit potential application in smart industry platforms and biomedicine monitoring.

摘要

具有大传感范围和高分辨率的液位传感器对于工业监测应用至关重要。在这项工作中,基于相敏光时域反射仪(φ-OTDR)提出并演示了一种分布式光纤液位传感器。基于热光效应,温度变化会引起光纤纤芯有效折射率的波动,以及光在光纤中传输的光程波动。因此,由于液体和空气之间的温差,φ-OTDR可以通过询问沿光纤的相位信息来检测大测量范围内的液位。此外,使用散射增强光纤(SEOF)作为传感光纤来提高相位信号的信噪比(SNR)。此外,设计并优化了一种通过将SEOF包裹在导热圆柱体上的高灵敏度液位传感头,以提高传感分辨率。在实验中,所提出的分布式液位传感器呈现出73.4 rad/mm的高灵敏度,基于160 s内10.4 rad的本底噪声,对应具有竞争力的142μm液位分辨率。现场测试验证了20 cm的大传感范围,该范围受圆柱体长度限制,而使用40 km的传感光纤时潜在传感范围可达320 m,证明动态范围为127.1 dB。所提出的具有大动态范围和高传感分辨率的液位传感器可惠及智能工业平台和生物医学监测中的潜在应用。

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