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High spatial resolution distributed optical fiber magnetic field sensor based on magnetostriction by optical frequency-domain reflectometry

机译:基于光学频率域反射测量的高空间分辨率分布式光纤磁场传感器

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The distributed optical fiber magnetic field sensors have a capability of spatially resolving the magnetic field along the entire sensing fiber that is distinguishes from other sensing methods. We present a distributed optical fiber magnetic field sensor based on magnetostriction using Rayleigh backscattering spectra shift in OFDR (optical frequency-domain reflectometry). As the spectral shift of Rayleigh backscattering can be used to achieve a distributed strain measurements with high sensitivity and high spatial resolution using OFDR. In the proposed sensor, the magnetostrictive Fe-Co-V alloy thin films as sensing materials are attached to a 51 m standard single mode fiber (SMF). We detect the strain coupled to SMF caused by variation of magnetic field by measuring Rayleigh Backscattering spectra shift in OFDR. In our experiment, we measure the range of the magnetic field is from 12.9 mT~143.3 mT using proposed method. The minimal measurable magnetic field variation is 12.9 mT when the spatial resolution is 4 cm. The minimal measurable magnetic field variation can be improved to 5.3 mT by increasing the spatial resolution to 14 cm. Moreover, we present the simulation result of two dimension (2D) distribution for the static magnetic field using the Maxwell software program.
机译:分布式光纤磁场传感器具有沿着整个感测光纤的空间地解析磁场的能力,该光纤与其他感测方法区分开来。我们在OFDR(光学频率域反射区)中使用瑞利反向散射光谱换档,介绍了一种基于磁致伸缩的分布式光纤磁场传感器。随着瑞利反向散射的光谱偏移可用于实现具有高灵敏度和高空间分辨率的分布式应变测量,使用DRD。在所提出的传感器中,磁致伸缩Fe-Co-V合金薄膜作为传感材料附着在51M标准单模光纤(SMF)上。通过测量OFDR中的瑞利反向散射光谱偏移,检测由磁场变化引起的耦合到SMF的应变。在我们的实验中,使用所提出的方法测量磁场的范围为12.9mt〜143.3mt。当空间分辨率为4厘米时,最小可测量的磁场变化是12.9 mt。通过将空间分辨率增加到14厘米,可以将最小可测量的磁场变化改善为5.3mt。此外,我们使用Maxwell软件程序呈现了静态磁场的两个尺寸(2D)分布的仿真结果。

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