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Integrated monitoring scheme for a maglev guideway using multiplexed FBG sensor arrays

机译:使用多路FBG传感器阵列的磁悬浮导轨集成监控方案

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In the structural monitoring of maglev guideways, electromagnetic interference (EMI) can be a significant problem, as the maglev train is powered by high-voltage electric feeding systems. Recently, researchers have successfully applied fiber optic sensors to modern railway structures, mainly because they offer EMI immunity. This study presents an integrated monitoring scheme for a maglev guideway using wavelength division multiplexing (WDM)-based fiber Bragg grating (FBG) sensors. The physical quantities such as strains, curvatures, and vertical deflections are measured in field tests. The strains are directly measured from multiplexed FBG sensors at various locations on a test bridge followed by curvature calculations based on the plane section assumption. Vertical deflections are then estimated using the Bernoulli beam theory and regression analyses. Frequency information obtained from the proposed method is compared with those from a conventional accelerometer. Verification tests were conducted on a newly developed Korean maglev test track at different vehicle speeds.
机译:在磁悬浮导轨的结构监视中,电磁干扰(EMI)可能是一个重大问题,因为磁悬浮列车由高压供电系统供电。最近,研究人员已经成功地将光纤传感器应用于现代铁路结构,这主要是因为它们具有EMI抗扰性。这项研究提出了一种基于波分复用(WDM)的光纤布拉格光栅(FBG)传感器的磁悬浮导轨集成监控方案。物理量(例如应变,曲率和垂直挠度)在现场测试中进行测量。应变是从测试桥上各个位置的多路FBG传感器直接测量的,然后根据平面截面假设进行曲率计算。然后使用伯努利梁理论和回归分析来估计垂直挠度。从建议的方法获得的频率信息与从传统的加速度计获得的频率信息进行比较。验证测试是在新开发的韩国磁悬浮测试轨道上以不同的车速进行的。

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