Development of a Structural Health Monitoring Methodology in Reinforced Concrete Structures Using FBGs and Pattern Recognition Techniques

Alejandra Amaya, J. Alvarez-Montoya, J. Sierra-Pérez
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引用次数: 1

Abstract

Structural health monitoring (SHM) is a branch of structural engineering which seeks for the development of monitoring systems that provide relevant information of any alteration that may occur in an engineering structure. This work presents the implementation of an SHM methodology in a prototype structure made of reinforced concrete by using fiber Bragg gratings (FBGs), a type of fiber optic sensor capable of measuring strain and temperature changes due to external stimuli. The SHM system includes an interrogation device and signal processing algorithms which are intended to study the physical variations on the FBGs measurements in order to detect anomalies in the structure promoted by a damage occurrence. The structure prototype is a porticoed structure which contains 48 embedded sensors: 32 of them are destinated for the strain measurement and are located in both columns and beams of the structure, 16 are temperature sensors which have been embedded for thermal compensation. Strain datasets for both pristine and damaged conditions were obtained for the structure while it was excited with a mechanical shaker which induced dynamic loading conditions resembling earthquakes. By using classification algorithms based on pattern recognition, it is intended to process the datasets with the aim of reaching the first level of SHM in the structure (damage detection).
基于fbg和模式识别技术的钢筋混凝土结构健康监测方法的发展
结构健康监测(SHM)是结构工程的一个分支,旨在开发监测系统,提供工程结构可能发生的任何变化的相关信息。这项工作通过使用光纤布拉格光栅(fbg)在钢筋混凝土制成的原型结构中实现了SHM方法,光纤布拉格光栅是一种能够测量由于外部刺激引起的应变和温度变化的光纤传感器。SHM系统包括一个询问装置和信号处理算法,旨在研究fbg测量的物理变化,以便检测由损伤发生引起的结构异常。结构原型是一个包含48个嵌入式传感器的porticote结构,其中32个用于应变测量,位于结构的柱和梁中,16个是嵌入热补偿的温度传感器。在机械激振器的激励下,结构受到类似地震的动加载条件,得到了原始和损坏状态下的应变数据集。通过使用基于模式识别的分类算法,旨在对数据集进行处理,以达到结构中SHM的第一级(损伤检测)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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