A novel optical fiber accelerometer system for monitoring civil infrastructure

Dae-Hyun Kim, M. Feng
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引用次数: 5

Abstract

This paper presents a novel optical fiber accelerometer system for monitoring large-scale civil infrastructure such as utility lifelines, highway bridges, and buildings. Particularly suitable applications are in environments where conventional electric accelerometers cannot be used due to strong electromagnetic (EM) interference, electric spark-induced explosion risk, and cabling problems. The proposed optical fiber accelerometer represents a novel integration of the moire phenomena and fiber optics to achieve a robust performance in addition to its immunity to EM interference, easy cabling, and low cost. All of these make the proposed sensor ideal for applications in civil infrastructure monitoring. A prototype sensor system has been developed, together with a real-time signal processing software equipped with a unique compensation filter to increase the sensor's dynamic bandwidth. The experimental studies demonstrated the high-performance of the optical fiber sensor system
一种用于民用基础设施监测的新型光纤加速度计系统
本文提出了一种新型光纤加速度计系统,用于监测大型民用基础设施,如公用事业生命线、公路桥梁和建筑物。特别适合的应用环境是,由于强电磁(EM)干扰,电火花引起的爆炸风险和布线问题,传统的电子加速度计不能使用。所提出的光纤加速度计是将云纹现象与光纤相结合的一种新方法,除了具有抗电磁干扰、易于布线和低成本的特点外,还具有强大的性能。所有这些都使所提出的传感器成为民用基础设施监测应用的理想选择。开发了传感器系统原型,并配备了一个实时信号处理软件,该软件配备了独特的补偿滤波器,以增加传感器的动态带宽。实验研究证明了该光纤传感系统的高性能
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