• Acta Optica Sinica
  • Vol. 41, Issue 13, 1306023 (2021)
Zhen Zhong1、2, Xuping Zhang2、*, and Ningmu Zou3
Author Affiliations
  • 1School of Photoelectric Engineering, Changzhou Institute of Technology, Changzhou, Jiangsu 213002, China
  • 2Key Laboratory of Intelligent Optical Sensing and Manipulation, Ministry of Education,Nanjing University, Nanjing, Jiangsu 210093, China
  • 3School of Computer Science, Georgia Institute of Technology, Atlanta 30332, USA
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    DOI: 10.3788/AOS202141.1306023 Cite this Article Set citation alerts
    Zhen Zhong, Xuping Zhang, Ningmu Zou. Enhancement of Measurable Range for Acoustic Signal in Phase Optical Time Domain Reflector[J]. Acta Optica Sinica, 2021, 41(13): 1306023 Copy Citation Text show less
    Phase extraction in coherent ϕ-OTDR based on the single frequency light. (a) Process of phase extraction; (b) phase change of one pulse under a small perturbation; (c) phase change of one pulse under a large perturbation
    Fig. 1. Phase extraction in coherent ϕ-OTDR based on the single frequency light. (a) Process of phase extraction; (b) phase change of one pulse under a small perturbation; (c) phase change of one pulse under a large perturbation
    Analysis of two frequency lights. (a) Pulse train with the original probe light and the auxiliary light; (b) distribution of differential phase under ideal state; (c)(d) distribution of differential phase under wrong unwrapping condition; (e) distribution of differential phase under correct unwrapping condition
    Fig. 2. Analysis of two frequency lights. (a) Pulse train with the original probe light and the auxiliary light; (b) distribution of differential phase under ideal state; (c)(d) distribution of differential phase under wrong unwrapping condition; (e) distribution of differential phase under correct unwrapping condition
    Phase extraction in coherent ϕ-OTDR with auxiliary light. (a) New process of phase extraction; (b) phase change of one pulse under a large perturbation
    Fig. 3. Phase extraction in coherent ϕ-OTDR with auxiliary light. (a) New process of phase extraction; (b) phase change of one pulse under a large perturbation
    Experimental setup and its schematic for coherent ϕ-OTDR with/without the auxiliary light
    Fig. 4. Experimental setup and its schematic for coherent ϕ-OTDR with/without the auxiliary light
    Superposition of retrieved results when the amplitude of driving signal is 2.5 V in ϕ-OTDR only using the original probe light. (a) Intensity of Rayleigh scattering signal; (b) phase change
    Fig. 5. Superposition of retrieved results when the amplitude of driving signal is 2.5 V in ϕ-OTDR only using the original probe light. (a) Intensity of Rayleigh scattering signal; (b) phase change
    Superposition of retrieved results when the amplitude of driving signal is 5.0 V in ϕ-OTDR only using the original probe light. (a) Intensity of Rayleigh scattering signal; (b) phase change
    Fig. 6. Superposition of retrieved results when the amplitude of driving signal is 5.0 V in ϕ-OTDR only using the original probe light. (a) Intensity of Rayleigh scattering signal; (b) phase change
    Retrieved results from the original probe light when auxiliary probe light is used in ϕ-OTDR. (a) Superposition of phase changes; (b) phase signal
    Fig. 7. Retrieved results from the original probe light when auxiliary probe light is used in ϕ-OTDR. (a) Superposition of phase changes; (b) phase signal
    Maximum phase jump values under different parameters. (a) Frequency; (b) amplitude
    Fig. 8. Maximum phase jump values under different parameters. (a) Frequency; (b) amplitude
    Zhen Zhong, Xuping Zhang, Ningmu Zou. Enhancement of Measurable Range for Acoustic Signal in Phase Optical Time Domain Reflector[J]. Acta Optica Sinica, 2021, 41(13): 1306023
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