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Modeling of transverse loading effect on Bragg grating signals

机译:布拉格光栅信号的横向载荷效应建模

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Fiber Bragg gratings (FBGs) can provide extremely sensitive strain measurements for various materials and structures. The main functionality of the Bragg grating is along the fiber's main axis, where changes in the grating's spacing can be converted into strain measurements. Previous work from a number of researchers has identified bifurcation and broadening of the Bragg signal under transverse loading. The work presented in this paper highlights efforts to relate transverse loading to changes in index of refraction in the fiber core cross section, and then ultimately to predicted changes in Bragg signals. The modeling work completed provides a useful tool in predicting effects on FBGs of potential transverse loading scenarios, whether these effects are undesirable, or sought after. Analytical and numerical analyses are presented as well as a background of interest in loading effects and birefringence with respect to Bragg grating applications.
机译:光纤布拉格光栅(FBG)可以为各种材料和结构提供极其灵敏的应变测量。布拉格光栅的主要功能是沿着光纤的主轴,光栅间距的变化可以转换为应变测量。许多研究人员的先前工作已经确定了横向载荷作用下布拉格信号的分叉和展宽。本文介绍的工作重点介绍了将横向载荷与纤芯横截面的折射率变化相关联,然后最终与布拉格信号的预测变化相关联的工作。完成的建模工作提供了一个有用的工具,可以预测潜在的横向载荷场景对FBG的影响,无论这些影响是不希望的还是受到追捧的。提出了分析和数值分析,以及有关布拉格光栅应用的载荷效应和双折射的背景知识。

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