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Magnetic Field Sensing With Reflectivity Ratio Measurement of Fiber Bragg Grating

机译:光纤布拉格光栅反射率测量的磁场感应

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摘要

A simple magnetic field sensor by using an optical fiber Bragg grating (FBG) cascaded by a cleaved optical fiber end, which is surrounded with magnetic fluid (MF), is experimentally demonstrated. Magnetic field changes Fresnel reflectivity of the fiber end face through refractive index change of the MF, leading to a modulation to the reflection background in the reflection spectrum of the FBG. By comparing intensity difference between the FBG reflection peak, which is not sensitive to the external magnetic field, and the reflection background, magnetic field measurement is achieved successfully. High accuracy and stability can be realized because influence of power level fluctuation of the optical source on measurement results can be eliminated. Furthermore, temperature can be measured simultaneously from reflection wavelength shift of the FBG that is helpful to further compensate the effect of temperature on magnetic field measurement.
机译:通过实验证明了一种简单的磁场传感器,该传感器通过使用由裂开的光纤末端级联的光纤布拉格光栅(FBG)包围,并被磁性流体(MF)包围。磁场通过MF的折射率变化来改变光纤端面的菲涅耳反射率,从而导致对FBG反射光谱中反射背景的调制。通过比较对外部磁场不敏感的FBG反射峰和反射背景之间的强度差,可以成功地进行磁场测量。因为可以消除光源的功率水平波动对测量结果的影响,所以可以实现高精度和稳定性。此外,可以根据FBG的反射波长偏移同时测量温度,这有助于进一步补偿温度对磁场测量的影响。

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