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Fiber optic shape sensor system for a morphing wing trailing edge

机译:用于变形机翼后缘的光纤形状传感器系统

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摘要

The objective of this work is to present a conceptual design and the modelling of a distributed sensor system based on fiber optic devices (Fiber Bragg Grating, FBG), aimed at measuring span-wise and chord-wise variations of an adaptive (morphing) trailing edge. The network is made of two different integrated solutions for revealing deformations of the reference morphing structure. Strains are confined to typical values along the span (length) but they are expected to overcome standard ranges along the chord (width), up to almost 10%. In this case, suitable architectures may introduce proper modulations to keep the measured deformation low while preserving the information content. In the current paper, the designed monitoring system combines the use of a span-wise fiber reinforced patch with a chord-wise sliding beam. The two elements make up a closed grid, allowing the reconstruction of the complete deformed shape under the acceptable assumption that the transformation refers to regular geometry variations. Herein, the design logic and some integration issues are reported. Preliminary experimental test results are finally presented.
机译:这项工作的目的是提出基于光纤设备(光纤布拉格光栅,FBG)的分布式传感器系统的概念设计和建模,旨在测量自适应(变形)拖尾的翼展方向和弦方向变化边缘。该网络由两个不同的集成解决方案组成,用于显示参考变形结构的变形。应变沿跨度(长度)限制在典型值范围内,但有望超过弦沿(宽度)的标准范围,最高可达10%。在这种情况下,合适的体系结构可以引入适当的调制,以在保持信息内容的同时将测得的变形保持在较低水平。在当前的论文中,设计的监视系统将翼展方向的纤维增强补丁与弦向滑动梁的使用结合在一起。这两个元素组成一个封闭的网格,可以在可以接受的假设(即转换是指规则的几何变化)下重建完整的变形形状。在此,报告了设计逻辑和一些集成问题。最终提供了初步的实验测试结果。

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