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Combination of GPS and RTS measurements for the monitoring of semi-static and dynamic motion of pedestrian bridge

机译:结合GPS和RTS测量来监测人行天桥的半静态和动态运动

摘要

GPS and accelerometers have been broadly used the last decade for the monitoring of flexible structures and bridges, while Robotic Total Station (RTS) has been successfully assessed for the monitoring of slow and dynamic motions. Further experimental studies have revealed specific drawbacks of the GPS (multipath, etc.) and RTS (clipping, etc.) monitoring techniques and how these can be surpassed by their combined use. In the current study, we assess the performance of the complementary use of GPS and RTS for the monitoring of the semi-static and dynamic displacement of a relatively rigid pedestrian bridge, with main modal frequency more than 1Hz.udTwo RTS and GPS receivers were synchronised monitoring the deflection of the two sides of the mid-span of the bridge, while pedestrians excited the bridge. Several excitations (walking, marching, jumping, etc.) were examined, causing semi-static and/or dynamic displacement of the bridge, and rotation of the deck, of different amplitude and frequencies. The analysis of the RTS and GPS time-series, which was based on spectral analysis and band-pass filtering of the time-series, resulted to low- and high-frequency component expressing the semi-static and dynamic displacement. Finally, the combination of the GPS and RTS time-series made possible the estimation of 1-4mm semi-static displacement, the 5-10mm dynamic displacement and the estimation of the main modal frequencies.
机译:在过去的十年中,GPS和加速度计已广泛用于监视柔性结构和桥梁,而机器人全站仪(RTS)已成功评估了对慢动作和动态运动的监视。进一步的实验研究已经揭示了GPS(多路径等)和RTS(剪辑等)监视技术的特定缺点,以及如何通过组合使用来克服这些缺点。在当前的研究中,我们评估了GPS和RTS互补使用以监测主模态频率大于1Hz的相对刚性的人行桥的半静态和动态位移的性能。 ud两个RTS和GPS接收器分别是同步监测桥梁中跨两侧的变形,同时行人兴奋了桥梁。检查了几种激励(步行,行进,跳跃等),导致桥梁的半静态和/或动态位移以及甲板的旋转,振幅和频率不同。基于频谱分析和时间序列的带通滤波,对RTS和GPS时间序列进行分析,结果得到了表示半静态和动态位移的低频和高频分量。最后,GPS和RTS时间序列的组合使估算1-4mm半静态位移,5-10mm动态位移和估计主要模态频率成为可能。

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