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Application of Optical-Fiber Bragg Grating Sensors in Monitoring the Rail Track Deformations

机译:光纤布拉格光栅传感器在铁轨变形监测中的应用

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The lateral flow of ballast during the passage of trains can reduce the stability of rail tracks. Therefore, it is important to monitor and restrain the movement of ballast accordingly in order to prevent track misalignment. This current study explored the use of optical-Fiber Bragg Grating (FBG) sensors to measure the lateral displacement of unreinforced and geogrid-reinforced ballast. The tests were conducted on fresh latite basalt at a loading frequency of 20 Hz and up to 250 000 load cycles. The test results showed that the FBG sensing system is fully capable of measuring the lateral displacement of ballast under high-frequency cyclic loading. A comparison of strains obtained from FBGs installed at different depths along the ballast depth is made and the lateral strain profiles are measured. Moreover, an empirical model to convert the FBG strains to an equivalent lateral displacement of ballast is proposed to effectively use this technology in real-time monitoring of track deformations.
机译:列车通过时道of的横向流动会降低铁轨的稳定性。因此,重要的是相应地监视和限制镇流器的运动,以防止轨道未对准。这项当前的研究探索了使用光纤布拉格光栅(FBG)传感器来测量未加固和土工格栅加固的镇流器的横向位移。测试是在20 Hz的负载频率和高达250 000的负载循环下对新鲜的latite玄武岩进行的。测试结果表明,FBG传感系统完全能够测量高频循环载荷下镇流器的横向位移。比较了沿压载深度在不同深度安装的FBG所获得的应变,并测量了横向应变曲线。此外,提出了一种将FBG应变转换为压载物的等效横向位移的经验模型,以有效地将该技术用于轨道变形的实时监测。

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