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Optical frequency-domain reflectometry for microbend sensor demodulation

机译:光学频域反射仪用于微弯传感器解调

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摘要

The operation of an incoherent optical frequency-domain reflectometer for monitoring the continuous Rayleigh backscatter in a multimode optical fiber is presented. A simple but effective model to predict the value of beat frequencies arising in the system when excited by a linearly frequency-swept amplitude modulation has been developed. We have verified the model's predictions by experimental measurement of beat frequencies and modulation depth indices of different lengths of standard graded-index multimode optical fiber. Demonstration of the system sensitivity to the detection of microbending loss is then discussed. In particular the detection of loss in a hydrogel-based water-sensing cable allows an alternative interrogation to conventional optical time-domain reflectometry techniques to be implemented. We demonstrate that the incoherent optical frequency-domain reflectometer is capable of detecting and locating sections of increased loss in a multimode optical fiber, and we discuss the fundamental limits on spatial resolution and dynamic range.
机译:提出了一种用于监测多模光纤中连续瑞利背向散射的非相干光频域反射仪的操作。已经开发了一种简单但有效的模型,用于预测在被线性扫频幅度调制激励时系统中出现的拍频值。通过对不同长度的标准渐变折射率多模光纤的拍频和调制深度指数进行实验测量,我们已经验证了模型的预测。然后讨论了系统对检测微弯损耗的敏感性。特别地,基于水凝胶的水感测电缆中的损耗的检测允许对传统的光学时域反射测量技术进行替代询问。我们证明了非相干光频域反射仪能够检测和定位多模光纤中损耗增加的部分,并讨论了空间分辨率和动态范围的基本限制。

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