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Direct transverse load profile determination using the polarization-dependent loss spectral response of a chirped fiber Bragg grating

机译:利用transverse光纤布拉格光栅的偏振相关损耗光谱响应来直接确定横向载荷分布

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The determination of stress profiles created by transverse loads was proved to be important in different domains, such as structural health monitoring and biomechanics, and, more specifically, in the prostheses domain. In this paper, we report an original method to estimate the transverse load profile from the polarization-dependent loss (PDL) spectrum of a chirped fiber Bragg grating (CFBG). This method makes use of the relationship between the integration of the PDL of a CFBG, and the force profile has the advantage of not requiring any iterative method to estimate the transverse load profile. The relationship linking the integration of the PDL and the force profile is demonstrated using an analytical approximation of the transmission spectrum of CFBGs. The validity of this method for the determination of non-uniform load profiles is then shown using a numerical analysis. An experimental demonstration is finally reported using a 48 mm-long CFBG subject to different step transverse load profiles. (C) 2016 Optical Society of America
机译:事实证明,确定横向载荷产生的应力分布在不同领域都很重要,例如结构健康监测和生物力学,更具体地说,在假肢领域。在本文中,我们报告了一种从method光纤布拉格光栅(CFBG)的偏振相关损耗(PDL)光谱估计横向载荷分布的原始方法。该方法利用了CFBG的PDL积分与力分布之间的关系,该力分布的优点是不需要任何迭代方法即可估算横向载荷分布。使用CFBG透射光谱的解析近似值可以证明将PDL的积分与力分布图联系起来的关系。然后使用数值分析显示了该方法用于确定非均匀载荷分布的有效性。最后报道了使用48 mm长的CFBG经受不同阶跃横向载荷曲线的实验演示。 (C)2016美国眼镜学会

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