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Study on Improving the Dynamic Range of Demodulation Signals in Fiber Bragg Grating Sensing System using Digital Matched Filter

机译:数字匹配滤波器改善光纤光栅传感系统解调信号动态范围的研究

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摘要

A Method to realize signal demodulation of fiber Bragg grating (FBG) sensing system using non-balanced fiber Mach-Zehnder interferometer based on phase generated carrier (PGC) technique is proposed. A detecting scheme to realize phase carrier modulation using PZT phase modulator and to realize demodulation of detected signal using Bessel function and Fourier analysis is presented. The results of the analysis show that the upper limitation of the dynamic range in fiber Mach-Zehnder interferometer is limited by the frequency of the carrier and the cut-off frequency of the low pass filter. In order to enhance the function of filtering wave in phase generated carrier signal demodulation, we use digital matched filter (DMF) in place of low pass filter. The filter can be used to recover the useful signals from signals of a low signal-to-noise ratio. The wavelength detection accuracy of this demodulation scheme is 1.8pm, and the dynamic range of the FBG sensing system has been also improved. The theoretical analysis shows that the scheme can effectively suppress effect of random interference signals on the measurement accuracy and can demodulate the dynamic signal with high resolution.
机译:提出了一种基于相位产生载波(PGC)技术的非平衡光纤马赫曾德尔干涉仪实现光纤布拉格光栅(FBG)传感系统信号解调的方法。提出了一种利用PZT相位调制器实现相位载波调制,利用贝塞尔函数和傅立叶分析实现对检测信号的解调的检测方案。分析结果表明,光纤马赫曾德尔干涉仪中动态范围的上限受到载波频率和低通滤波器截止频率的限制。为了增强滤波在相位生成的载波信号解调中的功能,我们使用数字匹配滤波器(DMF)代替低通滤波器。滤波器可用于从低信噪比的信号中恢复有用信号。该解调方案的波长检测精度为1.8pm,并且FBG传感系统的动态范围也得到了改善。理论分析表明,该方案可以有效抑制随机干扰信号对测量精度的影响,可以对动态信号进行高分辨率解调。

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