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用于增强BOTDA传感器性能的双极光脉冲编码

Bipolar optical pulse coding for performance enhancement in BOTDA sensors.

作者信息

Soto Marcelo A, Le Floch Sébastien, Thévenaz Luc

机构信息

EPFL Swiss Federal Institute of Technology, Institute of Electrical Engineering, SCI-STI-LT, Station 11, CH-1015Lausanne, Switzerland.

出版信息

Opt Express. 2013 Jul 15;21(14):16390-7. doi: 10.1364/OE.21.016390.

Abstract

A pump signal based on bipolar pulse coding and single-sideband suppressed-carried (SSB-SC) modulation is proposed for Brillouin optical time-domain analysis (BOTDA) sensors. Making a sequential use of the Brillouin gain and loss spectra, the technique is experimentally validated using bipolar complementary-correlation Golay codes along a 100 km-long fiber and 2 m spatial resolution, fully resolving a 2 m hot-spot at the end of the sensing fiber with no distortion introduced by the decoding algorithm. Experimental results, in good agreement with the theory, indicate that bipolar Golay codes provide a higher signal-to-noise ratio enhancement and stronger robustness to pump depletion in comparison to optimum unipolar pulse codes known for BOTDA sensing.

摘要

本文提出了一种基于双极性脉冲编码和单边带抑制载波(SSB-SC)调制的泵浦信号,用于布里渊光时域分析(BOTDA)传感器。该技术通过依次利用布里渊增益和损耗谱,使用双极性互补相关格雷码沿着100公里长的光纤和2米的空间分辨率进行了实验验证,能够在传感光纤末端完全分辨出2米的热点,且解码算法不会引入失真。实验结果与理论结果吻合良好,表明与BOTDA传感中已知的最佳单极性脉冲码相比,双极性格雷码具有更高的信噪比增强和更强的抗泵浦损耗鲁棒性。

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