Kishida Kinzo, Aung Thein Lin, Lin Ruiyuan
Neubrex Co., Ltd., Sakaemachidori 1-1-24, Chuo-ku, Kobe 650-0023, Japan.
OlitGlobal Technologies, 3Fl 329 Huaxia Road, Kaohsiung 813016, Taiwan.
Sensors (Basel). 2024 Dec 27;25(1):98. doi: 10.3390/s25010098.
This article explores the use of distributed fiber optic sensing (DFOS) technology in monitoring civil infrastructure, with a concrete example of an elevated railway bridge in Taiwan. The field test utilized multiple strain-sensing fibers attached to a 1 km span of a bullet train railway bridge, which were combined to calculate the 3-dimensional bridge deformation. The installed sensing system and continuous measurements enabled quick safety confirmation after earthquakes of Richter scale 6.4 and 6.8 magnitudes occurred. Finally, the dynamic monitoring of a bullet train using Distributed Acoustic Sensing (DAS) demonstrated the merits of fiber optic sensing for both static and dynamic measurements. The empirical data gathered through this work aid in the evaluation of DFOS technology for structural-monitoring applications.
本文探讨了分布式光纤传感(DFOS)技术在民用基础设施监测中的应用,并以台湾一座高架铁路桥为例。现场测试在一列高速列车铁路桥1公里跨度范围内使用了多根应变传感光纤,这些光纤结合起来用于计算桥梁的三维变形。安装的传感系统和连续测量使得在发生里氏6.4级和6.8级地震后能够快速进行安全确认。最后,利用分布式声学传感(DAS)对高速列车进行动态监测,证明了光纤传感在静态和动态测量方面的优点。通过这项工作收集的经验数据有助于评估DFOS技术在结构监测应用中的性能。