A novel Sagnac fiber optic sensor employing time delay estimation for distributed detection and location

Yuan Wu, Pang Bian, B. Jia, Qian Xiao
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引用次数: 4

Abstract

A novel Sagnac fiber optic sensor employing time delay estimation for distributed detection and location is proposed and demonstrated. The sensor employs Sagnac interferometer as interfering unit. A broadband, low-coherence source is spectrally sliced into two wavelength bands using wavelength division multiplexer. Therefore, the sensor consists of two Sagnac interferometers, multiplexed with a broadband light source, interfering unit and sensing fiber by wavelength division multiplexer, and hence four detected signals with two different wavelengths are obtained. After the demodulation scheme based on 3×3 coupler, two signals with fixed time delay are achieved and the location of the disturbance gained by time delay estimation enables the localization comparably accurate. Experimental results show that the sensor is especially advantageous for low location error to the application of intrusion detecting.
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基于时延估计的Sagnac光纤传感器的分布式检测与定位
提出并演示了一种基于时延估计的新型Sagnac光纤传感器。该传感器采用Sagnac干涉仪作为干扰单元。使用波分复用器将宽带、低相干源频谱切割成两个波长带。因此,该传感器由两个Sagnac干涉仪与宽带光源、干涉单元和通过波分复用器复用的传感光纤组成,从而获得四个不同波长的检测信号。基于3×3耦合器的解调方案得到了两个具有固定时延的信号,通过时延估计得到的扰动位置使得定位比较准确。实验结果表明,该传感器具有定位误差小的特点,尤其有利于入侵检测的应用。
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