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Experimental monitoring of bridge frequency evolution during the passage of vehicles with different suspension properties

机译:具有不同悬架特性的车辆通过时桥梁频率演变的实验监控

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The natural frequencies of coupled vehicle-bridge systems change with vehicle position. These changes are generally attributed to the contribution of the additional mass of the vehicle. However, other mechanical properties of the vehicle influence the evolution of the vehicle-bridge system frequencies, an aspect that has rarely been addressed. The aim of this paper is to further explore how frequencies vary during a vehicle passage and empirically show that the frequency shift depends also on the vehicle-to-bridge frequency ratio. The responses of a scaled model of a vehicle traversing a bridge are measured and analysed. The signals are processed in the time-frequency domain to assess the non-stationary and non-linear nature of the responses. The interpretation is supported with the predictions of a coupled vehicle and bridge numerical model. The results confirm different frequency shifts for vehicles with the same mass but different suspension properties. Furthermore, the direct (sensor on bridge) and indirect (sensor on vehicle) methods of extracting the bridge fundamental frequency are compared. The implications of these findings for indirect or drive-by bridge monitoring techniques are discussed.
机译:耦合的车桥系统的固有频率随车辆位置而变化。这些变化通常归因于车辆额外质量的贡献。但是,车辆的其他机械性能会影响车桥系统频率的变化,这一方面很少得到解决。本文的目的是进一步探索车辆通行期间的频率变化,并凭经验表明频移也取决于车桥频率比。测量并分析了车辆通过桥梁的比例模型的响应。在时频域中处理信号,以评估响应的非平稳和非线性性质。该解释得到车辆和桥梁耦合数值模型的预测的支持。结果证实了相同质量但悬架特性不同的车辆的频移不同。此外,比较了提取桥基频的直接方法(桥上传感器)和间接方法(车上传感器)。讨论了这些发现对间接或行车桥监控技术的影响。

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