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Comparative Study of Damage Detection Methods Based on Long-Gauge FBG for Highway Bridges

机译:基于长速FBG的公路桥梁损伤检测方法的比较研究

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摘要

Damage detection of highway bridges is a significant part of structural heath monitoring. Conventional accelerometers or strain gauges utilized for damage detection have many shortcomings, especially their monitoring gauge length being too short, which would result in poor damage detection results. Under this circumstance, long-gauge FBG sensors as a novel optical sensor were developed to measure the macro-strain response of the structure. Based on this sensor, many derived damage detection methods were proposed. These methods exhibit various characteristics and have not been systematically compared. As a result, it is difficult to evaluate the state of the art and also leads to confusion for users to select. Therefore, a strict comparative study on three representative methods using long-gauge FBG was carried out. First, these methods’ theoretical backgrounds and formats were reformulated and unified for better comparison. Then, based on validated vehicle–bridge coupling simulation, these methods’ performances were tested through a series of parametric studies including various damage scenarios, vehicle types, speeds, road roughness and noise levels. The precision and reliability of three methods have been thoroughly studied and compared.
机译:公路桥梁的损坏检测是结构荒地监测的重要组成部分。用于损坏检测的常规加速度计或应变仪具有许多缺点,特别是它们的监控量长度太短,这将导致损坏检测结果差。在这种情况下,开发了作为一种新型光学传感器的长尺FBG传感器以测量结构的宏观应变响应。基于该传感器,提出了许多衍生的损伤检测方法。这些方法表现出各种特征,并且没有系统地进行系统。结果,难以评估现有技术,并且还导致用户选择的混淆。因此,进行了使用长表FBG的三种代表性方法的严格比较研究。首先,这些方法的理论背景和格式是重构和统一的,以便更好地进行比较。然后,基于经过验证的车桥耦合模拟,通过一系列参数研究测试了这些方法,包括各种损坏场景,车辆类型,速度,道路粗糙度和噪声水平。三种方法的精度和可靠性已经彻底研究并进行了比较。

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