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Improved axle detection for bridge weigh-in-motion systems using fiber optic sensors

机译:使用光纤传感器的桥梁动态称重系统改进了轴检测

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摘要

Bridge weigh-in-motion (B-WIM) systems provide a non-destructive means of gathering traffic loading information by using an existing bridge as a weighing scale to determine the weights of vehicles passing over. In this research critical locations for sensors for the next-generation B-WIM were determined from a full 3D explicit finite element analysis (FEA) model. Although fiber optic sensors (FOS) have become increasingly popular in SHM systems there are currently no commercially available fiber optic WIM systems available. The FEA in this research facilitated the development of the first ever full fiber optic B-WIM and its potential has been demonstrated with the site installation of this system. The system combined nothing-on-the-road axle detection and alternative methods of measuring strain at the supports. The system was installed on a 20-m span beam and slab RC bridge in Northern Ireland and the results presented in this paper confirm the suitability of FOS in providing the clear defined peaks required for accurate axle detection in B-WIM.
机译:桥梁动态称重(B-WIM)系统通过使用现有的桥梁作为秤来确定通过的车辆的重量,从而提供了一种收集交通负荷信息的非破坏性方法。在这项研究中,从完整的3D显式有限元分析(FEA)模型确定了下一代B-WIM传感器的关键位置。尽管光纤传感器(FOS)在SHM系统中变得越来越流行,但目前尚无可商购的光纤WIM系统。这项研究中的FEA促进了有史以来第一个全光纤B-WIM的开发,并且通过现场安装该系统已证明了其潜力。该系统结合了“无路”车轴检测和测量支撑件应变的替代方法。该系统安装在北爱尔兰20米跨度的梁和平板RC桥上,本文提供的结果证实了FOS在提供B-WIM中准确的车轴检测所需的清晰定义的峰值方面的适用性。

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