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3D-Printing Techniques on the Development of Multiparameter Sensors Using One FBG

机译:使用一个FBG开发多参数传感器的3D打印技术

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摘要

We report the development of a fiber Bragg grating (FBG) sensor for multiparameter sensing using only one FBG. The FBG was half-embedded in a 3D-printed structure, which resulted in a division of the grating spectrum creating two peaks with different sensitivities with respect to different physical parameters. A numerical analysis of the proposed technique was performed using the coupled-mode theory with modified transfer matrix formulation. Then, experimental analyses were performed as function of temperature, strain and force, where the peaks showed different sensitivities in all analyzed cases. Such results enable the application of a technique for simultaneous measurement of multiple physical parameters using both peaks and the full width half maximum of the FBG embedded in a 3D structure. In the simultaneous multiparameter assessment, the proposed sensor system was able to estimate the three tested parameters (strain, temperature and force) with relative errors as low as 4%.
机译:我们报告了仅使用一个FBG进行多参数传感的光纤布拉格光栅(FBG)传感器的开发。 FBG被半嵌入3D打印的结构中,这导致光栅光谱的划分,产生了两个对不同物理参数具有不同灵敏度的峰。使用改进的传递矩阵公式的耦合模式理论对提出的技术进行了数值分析。然后,根据温度,应变和力进行实验分析,其中在所有分析情况下,峰均显示出不同的灵敏度。这样的结果使得能够应用同时使用峰和嵌入3D结构的FBG的半峰全宽同时测量多个物理参数的技术。在同时进行的多参数评估中,所提出的传感器系统能够估计相对误差低至4%的三个测试参数(应变,温度和力)。

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