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Fundamentals of Optical Fiber Sensing Schemes Based on Coherent Optical Time Domain Reflectometry: Signal Model Under Static Fiber Conditions

机译:基于相干光时域反射法的光纤传感方案基础:静态光纤条件下的信号模型

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The paper develops a statistical model for the signals received in phase-sensitive optical time domain reflectometry (OTDR) probed by highly coherent sources. The backscattering process is modelled by a set of discrete scatterers with properly chosen parameters. Explicit equations for calculating the amplitude and the phase of the backscattered signal are obtained. The developed model predicts spectral and autocorrelation characteristics of the amplitude signals that are validated by experimental results. Characteristics of the phase signals, practicable for studying the sensing applications of the OTDR system, are presented and studied as well, demonstrating good correspondence with experiment. A more detailed modelling of distributed vibration sensing systems and their response to disturbances along an optical fiber will be possible as an extension of the developed formalism.
机译:本文针对高度相干源探测到的相敏光时域反射仪(OTDR)中接收的信号建立了统计模型。反向散射过程由一组具有适当选择的参数的离散散射体建模。获得用于计算反向散射信号的幅度和相位的显式方程。开发的模型可以预测振幅信号的频谱和自相关特性,这些特性已通过实验结果验证。提出并研究了相位信号的特性,可用于研究OTDR系统的传感应用,证明了与实验的良好对应性。分布式振动传感系统及其对沿光纤干扰的响应的更详细的建模将成为已开发形式形式的扩展。

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