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Transverse strain sensitivity of fiber Bragg grating sensors

机译:光纤布拉格光栅传感器的横向应变敏感性

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This article presents an integrated formulation for the calculation of the spectral response of a fiber Bragg grating sensor embedded in a host material system, as a function of the loading applied to the host structure. In particular, the calculation of the transverse strain sensitivity of a fiber Bragg grating sensor through the calculation of the change in effective index (or indices) of refraction of the fiber cross-section due to the applied load is presented in detail. For the calculation of the fiber propagation constants, a two-step finite element formulation is used moeling the optical, geometric and material properties of the cross-section. Once the propagation constants and principle optical axes are known along the fiber, a modified transfer matrix method is applied to calculate the spectral response of the FBG. It is shown that the inclusion of the change in index of refraction throughout the cross-section yields close agreement with previous methods. However the current method provides the potential to evaluate the effects of high strain gradients across the optical fiber core for some loading applications.
机译:本文提出了一种集成公式,用于计算嵌入主体材料系统中的光纤布拉格光栅传感器的光谱响应,这是施加于主体结构的载荷的函数。特别是,详细介绍了通过计算由于施加的载荷引起的纤维横截面折射率的有效折射率变化来计算光纤布拉格光栅传感器的横向应变灵敏度。为了计算纤维的传播常数,使用了两步有限元公式,对横截面的光学,几何和材料特性进行了修正。一旦沿着光纤知道了传播常数和主要光轴,便可以使用改进的传输矩阵方法来计算FBG的光谱响应。结果表明,将整个横截面的折射率变化包括在内,可以与以前的方法取得一致的结果。但是,对于某些负载应用,当前的方法提供了评估光纤芯上高应变梯度影响的潜力。

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