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Bridge health monitoring using deflection measurements under random traffic

机译:在随机流量下使用偏转测量的桥梁健康监控

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This paper demonstrates the potential to use measured deflection responses of a bridge to random traffic as a means of monitoring its structural health. Three displacement transducers are simulated on the bridge at different locations, providing absolute deflection data. The stiffness profile through the length of the bridge is calculated using these data. Vehicle axle loads are calculated as well as the relative bridge stiffness profile using a combined iteration approach. Axle spacings for each vehicle are currently measured in Bridge Weigh-in-Motion systems and are presumed to be known here. After estimating axle weights for each passing vehicle, the profile of bridge stiffness is calculated from batches of 1,000 vehicles with a focus on detecting any local damage. A moving average filter and a filtering method based on the Blackman window are used to reduce dynamic effects and the influence of noise. This stiffness profile approach is shown to be suitable for both damage location and quantification.
机译:本文展示了利用桥梁的测量偏转响应来随机流量作为监测其结构健康的手段。在不同位置的桥梁上模拟了三个位移传感器,提供绝对偏转数据。通过桥的长度的刚度轮廓使用这些数据计算。使用组合迭代方法计算车轴载荷以及相对桥刚度曲线。每辆车的轴间距目前在桥梁重入式系统中测量,并被推测在这里已知。在为每个经过车辆估计轴重之后,桥刚度的轮廓由1,000辆批次计算,重点是检测任何局部损坏。基于黑人窗口的移动平均滤波器和过滤方法用于减少动态效果和噪声的影响。该刚度剖面方法被证明适用于损伤位置和量化。

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