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Positioning Error Reduction Technique Using Spectrum Reshaping for Distributed Fiber Interferometric Vibration Sensor

机译:基于频谱整形的分布式光纤干涉振动传感器定位误差减小技术

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摘要

A novel positioning error reduction technique is proposed for dual Mach-Zehnder fiber interferometric distributed vibration sensor. The 3 dB bandwidth of the power spectrum of interference signal is broadened to reduce the mean square error (MSE) of the cross-correlation based positioning algorithm. A high-pass filter (HPF) whose cutoff frequency is larger than the upper frequency of signal 3 dB bandwidth is applied to reshape the original power spectrum by attenuating the magnitude of low-frequency mainlobe to the same order as that of the small high-frequency components. The usage of HPF can cause bandwidth broadening and signal to noise ratio (SNR) reduction, the influence of both effects on ultimate positioning MSE are analyzed in detail. Theoretical analysis shows that there exists a valid region for the cutoff frequency of the HPF within which the contribution of bandwidth broadening dominates the process. The technique is also experimentally verified and analyzed by field test on an installed submarine cable between two islands of Zhejiang Province, China. Field test results coincide with the theoretical predictions and show that a maximum of 7 dB reduction of positioning MSE can be achieved when optimal cutoff frequency of HPF is used.
机译:针对双马赫曾德尔光纤干涉分布式振动传感器,提出了一种新颖的定位误差减小技术。扩大了干扰信号功率谱的3 dB带宽,以减少基于互相关的定位算法的均方误差(MSE)。截止频率大于信号上限频率3 dB的高通滤波器(HPF)用于通过将低频主瓣的幅度衰减到与小高阶频率分量。 HPF的使用会导致带宽扩大和信噪比(SNR)降低,详细分析了这两种效应对最终定位MSE的影响。理论分析表明,对于HPF的截止频率存在一个有效区域,在该区域中,带宽扩展的作用主导了该过程。该技术还通过在中国浙江省两个岛屿之间安装的海底电缆的现场测试进行了实验验证和分析。现场测试结果与理论预测一致,表明当使用最佳HPF截止频率时,定位MSE最多可降低7 dB。

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