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High precision micro-displacement fiber sensor through a suspended-core Sagnac interferometer

机译:通过悬吊式Sagnac干涉仪的高精度微位移光纤传感器

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摘要

A sensing system for micro-displacement measurement based in a suspended-core fiber Sagnac interferometer is presented. The suspended-core fiber characterization was made through the use of an optical backscatter reflect-ometer, screening its multimodal and birefringent behavior. Its sensitivity to displacement measurements is shown to be due only to birefringence, being that core-cladding mode coupling is negligible. High precision (approx0.45 (mu)m) was obtained using three different measurement instruments, showing an extremely high stability and high insensitivity to temperature, demonstrating that the sensing system has the ability for low cost applications.
机译:提出了一种基于悬空光纤Sagnac干涉仪的微位移测量传感系统。通过使用光学反向散射反射仪对悬浮芯纤维进行表征,筛选其多峰和双折射行为。结果表明,它对位移测量的敏感性仅归因于双折射,因为纤芯-覆层模式耦合可忽略不计。使用三种不同的测量仪器获得了高精度(约0.45μm),显示出极高的稳定性和对温度的高度不敏感性,表明该传感系统具有低成本应用的能力。

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