反射计
结构健康监测
悬臂梁
结构工程
刚度
信号(编程语言)
干涉测量
材料科学
加速度
声学
扫频响应分析
钢筋混凝土
数据采集
信号处理
非线性系统
计算机科学
加速度计
光电探测器
频率响应
光纤传感器
光纤
激光多普勒测振仪
执行机构
光纤布拉格光栅
状态监测
光学
遥感
频域
拉伤
有限元法
点(几何)
振弦
校准
还原(数学)
时域
作者
Joo‐Young Lee,Hyoyoung Jung,Myoung Jin Kim,Young Ho Kim
出处
期刊:Sensors
[Multidisciplinary Digital Publishing Institute]
日期:2025-09-18
卷期号:25 (18): 5818-5818
被引量:1
摘要
This paper presents a compact dynamic optical frequency domain reflectometry (D-OFDR) platform enabling millimeter-scale, distributed strain sensing for real-time structural health monitoring (SHM) of reinforced concrete subjected to seismic loading. The proposed D-OFDR interrogator employs a dual-interferometer architecture: a main interferometer for strain sensing and an auxiliary interferometer for nonlinear frequency sweep compensation. Both signals are detected by photodetectors and digitized via a dual-channel FPGA-based DAQ board, enabling high-speed embedded signal processing. A dual-edge triggering scheme exploits both the up-chirp and down-chirp of a 50 Hz bidirectional sweep to achieve a 100 Hz interrogation rate without increasing the sweep speed. Laboratory validation tests on stainless steel cantilever beams showed sub-hertz frequency fidelity (an error of 0.09 Hz) relative to conventional strain gauges. Shake-table tests on a 2 m RC column under incremental seismic excitations (scaled 10-130%, peak acceleration 0.864 g) revealed distinct damage regimes. Distributed strain data and frequency-domain analysis revealed a clear frequency reduction from approximately 3.82 Hz to 1.48 Hz, signifying progressive stiffness degradation and structural yielding prior to visible cracking. These findings demonstrate that the bidirectional sweep-triggered D-OFDR method offers enhanced real-time monitoring capabilities, substantially outperforming traditional point sensors in the early and precise detection of seismic-induced structural damage.
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