基于大弯曲光纤的微位移传感器

Pengfei Wang, Y. Semenova, Qiang Wu, G. Farrell
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引用次数: 4

摘要

提出了一种结构简单的全光纤微米位移传感器,并进行了实验研究。所提出的光纤位移传感器由裸高弯曲损耗单模光纤1060xp的半环结构组成,采用著名的低语廊模式(WGM)效应。本文还介绍了一种用于询问该传感器的比率功率测量系统。通过测量比率系统中弯曲损失比的变化,假设比率系统被校准,则可以测量位移的变化。所提出的基于大弯曲光纤的位移传感器比其他传统光纤传感器具有更高的分辨率(小于75 nm的位移),并且具有简单的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Macrobending Fiber Based Micro-Displacement Sensor
An all-fiber micron displacement sensor with a simple configuration is proposed and investigated experimentally. The proposed fiber displacement sensor consists of a half-loop structure of bare high-bend loss singlemode fiber-1060XP, employing the well-known Whispering Gallery mode (WGM) effect. A ratiometric power measurement system for interrogating the proposed sensor is also presented. By measuring the change in ratio of bend loss in the ratiometric system, a change in displacement can be measured assuming the ratiometric system is calibrated. The proposed macrobending fiber based displacement sensor achieves a higher resolution (less than 75 nm of displacement) than other conventional fiber-optic sensors and also benefits from simplicity.
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