首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Study on the generation and influence factors of the new wavelength components in backscattering light of Phi-OTDR
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Study on the generation and influence factors of the new wavelength components in backscattering light of Phi-OTDR

机译:PHI-OTDR反散射光中新波长分量的生成及影响因素研究

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This paper investigates the new wavelength components in backscattering light of phase-sensitive optical time-domain reflectometry (phi-OTDR) fiber-optic vibration sensor based on quantitative spectrometric analysis. Experiments show that the new wavelength components are introduced into the optical spectrum as the optical pulse power increases. To explain this nonlinear phenomenon, different optical spectrum curves are obtained by changing the length of sensing fiber, pulse interval, and pulse width at different powers of Erbium-doped fiber amplifier (EDFA). Theoretical analysis and experimental results show that the nonlinear effect results from the four-wave mixing (FWM) effect. A comprehensive analysis of the influence factors is then proceeded, which guides us to avoid the nonlinear effect in advance and select appropriate parameters and optical devices for phi-OTDR system. This study suggests that the method of optical spectral analysis can also be applied to other fiber-optic sensors based on backscattering such as Brillouin scattering or Raman scattering.
机译:本文基于定量光谱分析研究了基于定量光谱分析的相敏光学时域反射测度测量(PHI-OTDR)光纤振动传感器的反向散射光的新波长分量。实验表明,随着光学脉冲功率的增加,新的波长分量被引入光谱。为了解释该非线性现象,通过改变erbium掺杂的光纤放大器(EDFA)的不同功率的感测光纤,脉冲间隔和脉冲宽度的长度来获得不同的光谱曲线。理论分析和实验结果表明,非线性效应由四波混合(FWM)效应产生。然后进行了对影响因素的全面分析,指导我们预先避免了非线性效果,并为PHI-OTDR系统选择合适的参数和光学装置。本研究表明,基于诸如布里渊散射或拉曼散射的反向散射,也可以应用光谱分析方法。

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