中空芯纤维Φ-OTDR传感可能性的研究

Yuting Yang, Malak Galal, L. Thévenaz
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引用次数: 0

摘要

空心芯光纤中的后向散射过程与瑞利散射有很大的相似之处,为分布式传感提供了开发潜力。利用经典的Φ-OTDR实现方法,对空心芯光子带隙光纤中二氧化硅-空气界面表面粗糙度的后向散射信号进行了观测。与标准单模硅芯光纤相比,空心芯光子带隙光纤在温度轻微变化时表现出混沌响应,而在严格恒温条件下则表现出稳定的响应。另一个温度依赖效应是高度干扰相干散射响应,并且认为高阶导模造成有害干扰完全干扰响应。通过使用单模空心芯光纤,原则上应该可以获得相关的温度测量模式,尽管正如预期的那样,信号的极端微弱肯定是一个无法克服的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the possibility of Φ-OTDR sensing in hollow-core fibres
The backscattering process in hollow core fibres shows a large similarity with Rayleigh scattering, offering the potential to be exploited for distributed sensing. A classical Φ-OTDR implementation is used to observe the backscattering signal from the surface roughness at the silica-air interface in hollow-core photonic bandgap fibres. In contrast with standard single mode silica-core fibres, the hollow core photonic bandgap fibre shows a chaotic response when the temperature is slightly changed, but stable results under strictly constant temperature conditions. Another temperature-dependent effect is highly perturbing the coherent scattering response, and it is believed that higher-order guided modes cause detrimental interferences totally jamming the response. By using single-mode hollow core fibres it should be in principle possible to obtain the relevant temperature measurement pattern, though as anticipated the extreme weakness of the signal certainly represents an insurmountable challenge.
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