GMA internal magnetic field measurement based on FBG

Jiamin Chen, Lei Wang, Yuxuan Tang, Huiming Zhou
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引用次数: 2

Abstract

A method to measure the magnetic field inside the Giant Magnetostrictive Actuator (GMA) is proposed. Improved Preisach Model is applied to eliminate the unavoidable nonlinearity error in the measurement. The effect of temperature on measurement can be eliminated by double Fiber Bragg Grating (FBG) structure. The double-sagnac loop combined with Polarization Maintaining Fiber (PMF) is used to demodulate the center wavelength. Sensing model of the FBG is established to realize temperature compensation for the measurement system. Experiment results show that resolution of 2.1×10-4 T can be achieved over a range of 127 mT, and the repeatability of overall measurement is 0.227%. Therefore, the proposed method can be used to measure the internal magnetic field of GMA effectively and reliably.
基于光纤光栅的GMA内部磁场测量
提出了一种测量超磁致伸缩作动器内部磁场的方法。采用改进的预估模型消除了测量中不可避免的非线性误差。采用双光纤光栅(FBG)结构可以消除温度对测量的影响。采用双sagnac环结合保偏光纤(PMF)对中心波长进行解调。建立了光纤光栅的传感模型,实现了测量系统的温度补偿。实验结果表明,在127 mT范围内,分辨率可达2.1×10-4 T,整体测量重复性为0.227%。因此,该方法可以有效、可靠地测量GMA的内部磁场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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