Reflectometric fiber optic sensor for distributed measurement of intense magneto-static fields

L. Palmieri, A. Galtarossa
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引用次数: 6

Abstract

A novel, distributed fiber optic sensor for the vector characterization of static magnetic fields is presented. The sensor is based on Faraday rotation and on the analysis of the state of polarization of the Rayleigh backscattered field. Specifically, the sensor measures the projection of the magnetic field vector in the direction of the fiber. By exploiting this feature and properly arranging the fiber, multi-dimensional maps of the magnetic field can be built. Owing to the faintness of Faraday rotation in standard optical fibers, the proposed sensor is most suited for intense magnetic fields. Experimental results are presented to show the successful measurement of the magnetic field of a 1.5-T magnetic resonance imaging scanner, with a relative accuracy of about 7% and a spatial resolution (along the fiber) of 3 cm.
用于强静磁场分布测量的反射式光纤传感器
提出了一种用于静态磁场矢量表征的新型分布式光纤传感器。该传感器基于法拉第旋转和瑞利背散射场的偏振状态分析。具体来说,传感器测量磁场矢量在光纤方向上的投影。利用这一特性,合理地排列光纤,就可以构建出磁场的多维图。由于法拉第旋转在标准光纤中的微弱性,该传感器最适合于强磁场。实验结果表明,1.5 t磁共振成像扫描仪的磁场测量成功,相对精度约为7%,空间分辨率(沿光纤)为3 cm。
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