不受施加力方向影响的保偏光纤横向力传感器:方案与实验

K. Hotate, S.O.S. Leng
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引用次数: 6

摘要

分布式或多路光纤应力传感器在土木结构的完整性监测和安全维护等领域受到越来越多的关注。有人提出,由外力引起的保偏光纤内的模式耦合可以用来测量光纤上的应力。一些使用这种原理的系统已经展示了分布式或多路应力传感能力。在本文中,我们提出了一种新的方法,即以T/sub p/=2b/sub l/n的螺距均匀扭转光纤,并以p/ sub p/=b/sub l/n/4的螺距扰动光纤,以克服传感器的角度和摄动长度依赖,其中b/sub l/为光纤的拍长,n为任意奇数。实验结果与理论预测吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transversal force sensor using polarization-maintaining fiber independent of direction of applied force: proposal and experiment
Distributed or multiplexed fiber-optic stress sensors have been gaining interest in the fields of integrity monitoring and security maintenance of civil structures. It has been proposed that mode-couplings within a polarization-maintaining fiber induced by an external force could be used to measure stress on the fiber. Several systems using this principle have demonstrated distributed or multiplexed stress sensing capabilities. In this paper, we propose a novel method of uniformly twisting the fiber at a pitch of T/sub p/=2b/sub l/n and perturbing the fiber at a pitch of P/sub p/=b/sub l/n/4 to overcome the angular and perturbation length dependence of the sensor, where b/sub l/ is the beat length of the fiber and n is an arbitrary odd integer. Experimental results obtained were in good agreement with theoretical prediction.
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