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Structural health monitoring by using fiber-optic distributed strain sensors with high spatial resolution

机译:使用具有高空间分辨率的光纤分布式应变传感器进行结构健康监测

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In this paper, we review our researches on the topics of the structural health monitoring (SHM) with the fiber-optic distributed strain sensor. Highly-dense information on strains in a structure can be useful to identify some kind of existing damages or applied loads in implementation of SHM. The fiber-optic distributed sensors developed by the authors have been applied to the damage detection of a single-lap joint and load identification of a beam simply supported. We confirmed that the applicability of the distributed sensor to SHM could be improved as making the spatial resolution higher. In addition, we showed that the simulation technique considering both structural and optical effects seamlessly in strain measurement could be powerful tools to evaluate the performance of a sensing system and design it for SHM. Finally, the technique for simultaneous distributed strain and temperature measurement using the PANDA-fiber Bragg grating (FBG) is shown in this paper, because problems caused by the cross-sensitivity toward strain and temperature would be always inevitable in strain measurement for SHM.
机译:在本文中,我们回顾了关于使用光纤分布式应变传感器进行结构健康监测(SHM)的研究。有关结构中应变的高密度信息对于确定SHM的实施中存在的某种损坏或施加的载荷可能很有用。作者开发的光纤分布式传感器已应用于单膝关节的损伤检测和简单支撑的梁的载荷识别。我们确认,随着空间分辨率的提高,分布式传感器对SHM的适用性将得到改善。此外,我们表明,在应变测量中无缝考虑结构和光学效应的仿真技术可以成为评估传感系统性能并将其设计用于SHM的强大工具。最后,本文展示了使用PANDA光纤布拉格光栅(FBG)进行同时分布的应变和温度测量的技术,因为在SHM的应变测量中,对应变和温度的交叉敏感性总是会不可避免地引起问题。

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