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Simultaneous position and displacement sensing using two fibre Bragg grating sensors

机译:使用两个光纤布拉格光栅传感器的同时位置和位移感测

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摘要

Over the years, many shape sensing methods have been developed with technologies including optical fibre, PZT and fringe projection. Among them, optical fibres have gained a lot of attention due to their unobtrusive nature when either surface mounted or embedded in the structure. Optical fibre Bragg gratings (FBG) are currently employed for structural health monitoring in civil and aerospace systems and their shape sensing capabilities have been previously reported. In this paper, we propose a novel fibre optic based shape sensor of an isotropic cantilever beam based on the principles of interferometry and FBG sensing. The method described in this paper uses a standard single core single-mode optical fibre and the least number of sensors to estimate the shape, making it comparatively an inexpensive sensing method. On displacing the beam with an unknown magnitude and at an unknown location along the beam, we are able to demonstrate that we can measure the shape of the displaced beam and the magnitude and location of the force applied. The analysis involves using a calibration method and an iterative calculation to measure the two unknowns. An analytical model based on the known beam theories was used to assess the accuracy of the measurements. The preliminary analysis yielded an accuracy of ±1 mm and ±50 mm for the displacement and location, respectively.
机译:多年来,许多形状感测方法已经被开发用的技术,包括光纤,PZT和条纹投影。其中,任一表面安装或嵌入在结构时光纤已经获得了很多的关注,因为它们不显眼的性质。光纤布拉格光栅(FBG)在民用和航天系统目前用于结构健康监测和它们的形状感测能力之前已经报道。在本文中,我们提出了一种基于干涉测量法和FBG传感原理的各向同性悬臂梁的一种新颖的基于光纤的形状传感器。本文中所描述的方法,采用了标准的单核单模光纤和传感器来估计所述形状的最少数目,使得它相对廉价的感测方法。上具有未知的幅度和在沿着梁的未知位置处的光束移位,我们能够证明,我们可以测量偏离的光束和所施加的力的大小和位置的形状。该分析涉及使用的校准方法和迭代计算,以测量两个未知数。用基于已知的光束的理论分析模型,以评估测量的精度。初步分析产生的±1毫米,±50毫米分别位移和位置,精度。

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