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基于偏振敏感光频域反射技术的分布式光纤磁场传感器

Distributed optical fiber magnetic field sensor based on polarization-sensitive OFDR.

作者信息

Tang Yi, Zhu Mengshi, Pang Fufei, Wei Heming, Zhang Liang, Chen Wei, Wang Tingyun

出版信息

Opt Express. 2024 Mar 25;32(7):11726-11736. doi: 10.1364/OE.511557.

Abstract

A distributed optical fiber magnetic field sensor based on a polarization-sensitive optical frequency domain reflectometer (POFDR) is proposed. It extracts the accumulated Faraday rotation by combining the Stokes vectors and the backward Mueller matrices from the measured states of polarization (SOPs) and obtains the magnetic field component. This method avoids adjusting the input polarization during the magnetic field sensing process. It overcomes the drawback of the conventional POFDR scheme, which requires at least two sets of different input SOPs for each sensing. Finally, the aforementioned effectiveness has been experimentally verified by using a single-mode sensing fiber. The results show that the sensor has good repeatability and linearity. The measurement error of the magnetic field sensor is 19.4 mT. The measured magnetic field variations agree with the applied ones with similarities higher than 0.98.

摘要

提出了一种基于偏振敏感光频域反射仪(POFDR)的分布式光纤磁场传感器。它通过结合斯托克斯矢量和来自测量偏振态(SOP)的后向穆勒矩阵来提取累积的法拉第旋转,并获得磁场分量。该方法避免了在磁场传感过程中调整输入偏振。它克服了传统POFDR方案的缺点,传统方案每次传感至少需要两组不同的输入SOP。最后,通过使用单模传感光纤对上述有效性进行了实验验证。结果表明,该传感器具有良好的重复性和线性度。磁场传感器的测量误差为19.4 mT。测量的磁场变化与施加的磁场变化相符,相似度高于0.98。

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