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Real-time Monitoring of Structural Vibration Using a Novel Fiber Optic Accelerometer System

机译:使用新型光纤加速度计系统实时监测结构振动

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This paper presents the use of a novel fiber optic accelerometer system to monitor civil engineering structures in real time. This sensor system integrates the Moire fringe phenomenon with fiber optics to achieve accurate and reliable measurements. A low-cost signal processing unit implements unique algorithms to further enhance the resolution and increase the dynamic bandwidth of the sensors. There are two major benefits in using this fiber optic accelerometer system for monitoring civil engineering structures. One is its immunity to electromagnetic (EM) interference making it suitable for difficult applications in such environments involving strong EM fields, electrical spark-induced explosion risks, and cabling problems, prohibiting the use of conventional electromagnetic accelerometers. The other benefit is its ability to measure both low- and high-amplitude vibrations with a constantly high resolution without pre-setting a gain level, as usually required in a conventional accelerometer. This benefit makes the sensor system particularly useful for real-time measurement of both ambient vibration (that is often used for structural health monitoring) and strong motion. This paper presents the prototype hardware and software development, characterization tests, and applications to real-time damage assessment, demonstrating the uniquely high performance of the Moire fringe fiber optic sensor system.
机译:本文介绍了一种新型光纤加速度计系统,实时监控土木工程结构。该传感器系统将Moire条纹现象与光纤集成,以实现准确可靠的测量。低成本信号处理单元实现独特的算法,以进一步增强分辨率并增加传感器的动态带宽。使用这种光纤加速度计系统进行监控土木工程结构有两种主要好处。一个是它对电磁(EM)干扰的免疫力,使其适用于涉及强大的EM场的这种环境中的困难应用,电气火花诱导的爆炸风险和布线问题,禁止使用传统的电磁加速度计。另一个益处是能够在不预先设定增益水平的情况下使用持续的高分辨率测量低压和高幅度振动,通常需要在传统的加速度计中所需的。这种益处使传感器系统特别适用于环境振动的实时测量(通常用于结构健康监测)和强烈的运动。本文将原型硬件和软件开发,表征测试和应用应用于实时伤害评估,展示了Moire条纹光纤传感器系统的唯一高性能。

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