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用于轨道微变形传感的光机电一体化系统

Opto-Mechatronics System for Train-Track Micro Deformation Sensing.

作者信息

Gan Weibing, Tu Shiyu, Tao Yuan, Ai Lingyun, Zhang Cui, Tang Jianguan

机构信息

National Engineering Laboratory for Fiber Optic Sensing Technology, Wuhan University of Technology, Wuhan 430070, China.

School of Information Engineering, Wuhan University of Technology, Wuhan 430070, China.

出版信息

Sensors (Basel). 2021 Dec 31;22(1):296. doi: 10.3390/s22010296.

Abstract

In this paper, we proposed and experimentally demonstrated an opto-mechatronics system to detect the micro-deformation of tracks caused by running trains. The fiber Bragg grating (FBG) array acting as sensing elements has a low peak reflectivity of around -40 dB. The center wavelengths were designed to alternate between 1551 nm and 1553 nm at 25 °C. Based on dual-wavelength, wavelength-division multiplexing (WDM)/time-division multiplexing (TDM) hybrid networking, we adopted optical time-domain reflectometry (OTDR) technology and a wavelength-scanning interrogation method to achieve FBG array signal demodulation. The field experimental results showed that the average wavelength shift of the FBG array caused by the passage of the lightest rail vehicle was -225 pm. Characteristics of the train-track system, such as track occupancy, train length, number of wheels, train speed, direction, and loading can be accurately obtained in real time. This opto-mechatronics system can meet the requirements of 600 mm spatial resolution, long distance, and large capacity for monitoring the train-track system. This method exhibits great potential for applications in large-scale train-track monitoring, which is meaningful for the safe operation of rail transport.

摘要

在本文中,我们提出并通过实验演示了一种光机电系统,用于检测行驶列车引起的轨道微变形。作为传感元件的光纤布拉格光栅(FBG)阵列具有约-40 dB的低峰值反射率。中心波长设计为在25°C时在1551 nm和1553 nm之间交替。基于双波长、波分复用(WDM)/时分复用(TDM)混合组网,我们采用光时域反射仪(OTDR)技术和波长扫描询问方法实现FBG阵列信号解调。现场实验结果表明,最轻轨道车辆通过时FBG阵列的平均波长偏移为-225 pm。列车-轨道系统的特性,如轨道占用情况、列车长度、车轮数量、列车速度、方向和负载等,都可以实时准确获取。这种光机电系统能够满足监测列车-轨道系统对600 mm空间分辨率、长距离和大容量的要求。该方法在大规模列车-轨道监测中具有巨大的应用潜力,对铁路运输的安全运行具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/619f/8749937/a555789dd731/sensors-22-00296-g001.jpg

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