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Phase-sensitive optical time-domain reflectometric system based on a single-source dual heterodyne detection scheme

机译:基于单源双外差检测方案的相敏光学时域反射系统

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摘要

A phase-sensitive optical time-domain reflectometric (F-OTDR) system based on a novel single-source dual heterodyne detection scheme is proposed and demonstrated. It uses the optical beat-frequency signals as the local oscillator signal containing the modulated frequency, frequency drift and phase fluctuation, while the signal to be detected contains all the forgoing spectral components, in addition to the vibration signal under measurement. Frequency mixing serves to isolate the pure vibration signal from the omnipresent residual frequency and phase fluctuations caused by a less strictly synchronous clock, inherent characteristics of the laser and the acousto-optical modulator, and environment temperature changes. With a reduced burden on data processing, better real-time performance is achieved as well. Using probe light pulses of 4 kHz repetition rate and 80 ns pulse width, a 9 m spatial resolution has been achieved on a 24.6 km sensing fiber, with a detectable frequency range from 5 Hz to 1.715 kHz, with a signal-to-noise ratio greater than 23.5 dB. All the above parameters are close to the maximum theoretical values. The drastically improved system demodulation characteristics foreshadow better performance and improved reliability in engineering applications. (C) 2017 Optical Society of America
机译:提出并证明了基于新型单源双外差检测方案的相敏光学时域反射计(F-OTDR)系统。它使用光学节拍频率信号作为包含调制频率,频率漂移和相位波动的本地振荡器信号,而待检测的信号除了测量下的振动信号之外还包含所有有型光谱分量。频率混合用来将纯振动信号与由较小的严格同步时钟,激光器和声光调制器的固有特性和环境温度变化引起的全能剩余频率和相位波动。通过减少数据处理的负担,也可以实现更好的实时性能。使用4 kHz重复率和80ns脉冲宽度的探针光脉冲,在24.6km感测光纤上实现了9米的空间分辨率,可检测频率范围为5Hz至1.715 kHz,具有信噪比大于23.5 dB。所有上述参数都接近最大理论值。急剧改进的系统解调特性预示着更好的性能和改善了工程应用的可靠性。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第14期|共7页
  • 作者单位

    Jilin Univ Coll Instrumentat &

    Elect Engn Changchun 130021 Jilin Peoples R China;

    Jilin Univ Coll Instrumentat &

    Elect Engn Changchun 130021 Jilin Peoples R China;

    Jilin Univ Coll Instrumentat &

    Elect Engn Changchun 130021 Jilin Peoples R China;

    Jilin Univ Coll Instrumentat &

    Elect Engn Changchun 130021 Jilin Peoples R China;

    Jilin Univ Coll Instrumentat &

    Elect Engn Changchun 130021 Jilin Peoples R China;

    Jilin Univ Coll Instrumentat &

    Elect Engn Changchun 130021 Jilin Peoples R China;

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  • 正文语种 eng
  • 中图分类 应用;
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