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首页> 外文期刊>Optics Letters >Real-time random grating sensor array for quasi-distributed sensing based on wavelength-to-time mapping and time-division multiplexing
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Real-time random grating sensor array for quasi-distributed sensing based on wavelength-to-time mapping and time-division multiplexing

机译:基于波长到时间映射和时分复用的准分布式感测的实时随机光栅传感器阵列

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摘要

A real-time random grating sensor array for quasi-distributed sensing based on spectral-shaping and wavelength-to-time (SS-WTT) mapping and time-division multiplexing is proposed and experimentally demonstrated. The sensor array consists of multiple random gratings written in a single-mode fiber (SMF) at different physical locations. When the temperature or strain applied to a particular random grating is changed, the central wavelength of the reflection spectrum of the random grating will change, which is converted to the time domain as a tune shift based on SS-WTT using a linearly chirped fiber Bragg grating. After detection at a photodetector, an electrical waveform with the time shift information encoded in the random waveform is obtained, which is further compressed by correlation to increase the time resolution. As a demonstration, a real-time quasi-distributed sensing system based on a two-random-grating array is implemented. The results show that the sensing resolutions for temperature and strain are 0.23 degrees C and 2.5 mu epsilon, respectively, and the accuracies for temperature and strain are 0.11 degrees C and 1.2 mu epsilon, respectively. Compared with a conventional quasi-distributed sensor, our proposed sensing system has key advantages, including real-time sensing, high-resolution interrogation, and large scalability. (C) 2019 Optical Society of America
机译:提出了一种基于光谱整形和波长到时间(SS-WTT)映射和时分复用的准分布式感测的实时随机射线传感器阵列和实验证明。传感器阵列由在不同物理位置的单模光纤(SMF)中写入的多个随机光栅组成。当施加到特定随机光栅的温度或应变时,随机光栅的反射谱的中心波长将改变,这将改变为使用线性啁啾光纤布拉格基于SS-WTT的调谐偏移的时域。光栅。在光电探测器检测之后,获得具有在随机波形中编码的时移信息的电波形,这通过相关来进一步压缩,以增加时间分辨率。作为演示,实现了基于双随机光栅阵列的实时准分布式感测系统。结果表明,温度和菌株的感测分辨率分别为0.23℃和2.5μmεε,温度和菌株的精度分别为0.11度C和1.2μmε。与传统的准分配传感器相比,我们提出的传感系统具有关键优势,包括实时感测,高分辨率询问和较大的可扩展性。 (c)2019年光学学会

著录项

  • 来源
    《Optics Letters》 |2019年第2期|共4页
  • 作者单位

    Univ Ottawa Sch Elect Engn &

    Comp Sci Microwave Photon Res Lab Ottawa ON K1N 6N5 Canada;

    Natl Res Council Canada Ottawa ON K1A 0R6 Canada;

    Natl Res Council Canada Ottawa ON K1A 0R6 Canada;

    Beijing Jiaotong Univ Inst Lightwave Technol Key Lab All Opt Network &

    Adv Telecommun Network Minist Educ Beijing 100044 Peoples R China;

    Univ Ottawa Sch Elect Engn &

    Comp Sci Microwave Photon Res Lab Ottawa ON K1N 6N5 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;光学;
  • 关键词

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