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A FBG sensor system with cascaded LPFGs and Music algorithm for dynamic strain measurement

机译:具有级联LPFG和音乐算法的FBG传感器系统,用于动态应变测量

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摘要

A Mach-Zehnder (M-Z) interferometer formed by two cascaded long-period fiber gratings (LPFGs) serving as ‘many’ multi-channel edge filters is used to detect the wavelength shift, induced by measurand of fiber Bragg grating (FBG) sensors with high optical SNR of >60 dB due to the use of a fiber ring laser, for the first time to our knowledge. Advantages of such a demodulation device are low-cost, compact, easy fabrication and implementation, good immunity of vibration and temperature, etc. In addition, in order to improve the resolution for dynamic strain measurement, a spectral analyzing algorithm called Music modern spectrum estimation is adapted. The experimental results show that a dynamic strain resolution of 0.1 μ/Hz1/2 at 700 Hz is obtained, which is 10 times improvement in strain resolution when compared with conventional FFT method.
机译:由两个级联的长周期光纤光栅(LPFG)充当“许多”多通道边缘滤波器组成的Mach-Zehnder(MZ)干涉仪用于检测由测量的光纤布拉格光栅(FBG)传感器和据我们所知,这是由于使用光纤环形激光器而产生的> 60 dB的高光学SNR。这种解调装置的优点是低成本,紧凑,易于制造和实施,对振动和温度具有良好的抗扰性等。此外,为了提高动态应变测量的分辨率,一种称为音乐现代频谱估计的频谱分析算法适应。实验结果表明,在700 Hz时可获得0.1μ/ Hz1 / 2的动态应变分辨率,与传统FFT方法相比,其应变分辨率提高了10倍。

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