• Study On Optical Communications
  • Vol. 46, Issue 1, 7 (2020)
WANG Qiang1, REN Xiao-lin1, YI Shui-han2, YU Jie-kui2..., ZHANG Pu3 and LI Wei3|Show fewer author(s)
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  • 1[in Chinese]
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    DOI: 10.13756/j.gtxyj.2020.01.002 Cite this Article
    WANG Qiang, REN Xiao-lin, YI Shui-han, YU Jie-kui, ZHANG Pu, LI Wei. Long-distance and High-precision LFM Optical Time Domain Reflectometer[J]. Study On Optical Communications, 2020, 46(1): 7 Copy Citation Text show less
    References

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    [4] Martins H F, Martin-Lopez S, Corredera P, et al. Modulation Instability-Induced Fading in Phase-Sensitive Optical Time-Domain Reflectometry[J]. Optics Letters, 2013, 38(6): 872-874.

    [5] Healey P, Malyon D J. OTDR in Single-Mode Fibre at 1.5 μm Using Heterodyne Detection[J]. Electronics Letters, 1982, 18(20): 862-863.

    [6] King J, Smith D, Richards K, et al. Development of A Coherent OTDR Instrument[J]. Journal of Lightwave Technology, 1987, 5(4): 616-624.

    [7] Zhang P, Feng Q, Li W, et al. Simultaneous OTDR Dynamic Range and Spatial Resolution Enhancement by Digital LFM Pulse and Short-Time FrFT[J]. Applied Sciences, 2019, 9(4): 668.

    [8] Catherall A T, Williams D P. High Resolution Spectrograms Using a Component Optimized Short-Term Fractional Fourier Transform[J]. Signal Processing, 2010, 90(5): 1591-1596.

    WANG Qiang, REN Xiao-lin, YI Shui-han, YU Jie-kui, ZHANG Pu, LI Wei. Long-distance and High-precision LFM Optical Time Domain Reflectometer[J]. Study On Optical Communications, 2020, 46(1): 7
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