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Monitoring of the Static and Dynamic Displacements of Railway Bridges with the Use of Inertial Sensors

机译:使用惯性传感器监测铁路桥梁的静态和动态位移

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摘要

In the case of the monitoring of bridges, the determination of vertical displacements is one of the most important issues. A new measuring system has been developed and implemented for assessment of railway bridges based on measurements of the structural response to passing trains. The system uses inertial sensors: Inclinometers and accelerometers that do not need any referential points. The system records signals related to the passage of a train over a monitored bridge. The signals from inclinometers before the train’s entry are used to determine the static movement. Integrated signals from inclinometers and accelerometers are used to determine dynamic displacements when the train goes through the bridge. Signals from inclinometers are used to determine the so-called “quasi-static” component of the displacement and signal from the accelerometer to determine the dynamic component. Field tests have been carried out on a viaduct along a high-speed railway line. Periodic comparative measurements are carried out using a Total Station to verify static measurements and using inductive sensors to verify dynamic measurements. Tests of the system carried out so far have proven its usefulness for monitoring bridges in a high-speed railway (up to 200 km/h) with high accuracy while determining dynamic displacements.
机译:在监测桥梁的情况下,确定垂直位移是最重要的问题之一。已经开发并实施了一种新的测量系统,用于基于对经过的列车的结构响应的测量来评估铁路桥梁。该系统使用惯性传感器:不需要任何参考点的倾斜计和加速度计。该系统记录与列车通过被监视桥梁有关的信号。火车进站前来自测斜仪的信号用于确定静态运动。当火车经过桥时,来自测斜仪和加速度计的集成信号用于确定动态位移。来自倾角仪的信号用于确定位移的所谓“准静态”分量,而来自加速度计的信号用于确定动态分量。已经在高铁线上的高架桥上进行了现场测试。定期比较测量使用全站仪进行,以验证静态测量,并使用感应传感器进行动态测量。迄今为止,对该系统的测试已证明其在确定动态位移的同时,可用于高精度监视高速铁路(时速200 km / h)中的桥梁的有用性。

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