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Demodulation Method of Identical Ultra-Weak Fiber Bragg Grating Array Based on Golay Code

机译:基于Golay码的相同超弱光纤布拉格光栅阵列的解调方法

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A noise-resilient demodulation technique is proposed and demonstrated with a Golay coded optical pulse source, for a quasi-distributed sensor array constructed by identical ultra-weak fiber Bragg gratings (UWFBGs). We set up a light source, which line width is over 20GHz, to avoid the interference between adjacent gratings as a result of wide optical pulses in coded pulse train. Attributed to the special autocorrelation property of Golay code, wavelength demodulation of the identical UWFBGs is achieved with improved noise resistance. With a 32-bit Golay coded pulse train, temperature sensing is achieved with 3-m spatial resolution over a 9.06-km UWFBG array. The signal-to-noise ratio (SNR) of the time-domain signal is increased by 6.9 dB, as compared to the case when an uncoded pulse train is adopted. The proposed decoding algorithm can remove the requirement for complex decoding hardware, leading to a greatly simplified experimental setup.
机译:提出了一种噪声弹性解调技术,并用Golay编码光脉冲源对由相同的超弱光纤布拉格光栅(UWFBG)构成的准分布式传感器阵列进行了说明。我们建立了一个光源,线宽超过20GHz,以避免在编码脉冲系中的宽光脉冲之间的相邻光栅之间的干扰。归因于Golay代码的特殊自相关属性,通过改善抗噪声来实现相同UWFBG的波长解调。采用32位高利编码脉冲列车,通过9.06 km UWFBG阵列,实现温度传感,采用3米空间分辨率实现。与采用未编码脉冲系相比,时域信号的信噪比(SNR)增加了6.9dB。所提出的解码算法可以消除复杂解码硬件的要求,导致大大简化的实验设置。

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