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A vision-based system for long-distance remote monitoring of dynamic displacement: experimental verification on a supertall structure

机译:动态位移的远程远程监控基于视觉系统:超空结构的实验验证

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Dynamic displacement response of civil structures is an important index for in-construction and in-service structural condition assessment. However, accurately measuring the displacement of large-scale civil structures such as high-rise buildings still remains as a challenging task. In order to cope with this problem, a vision-based system with the use of industrial digital camera and image processing has been developed for long-distance, remote, and real-time monitoring of dynamic displacement of supertall structures. Instead of acquiring image signals, the proposed system traces only the coordinates of the target points, therefore enabling real-time monitoring and display of displacement responses in a relatively high sampling rate. This study addresses the in-situ experimental verification of the developed vision-based system on the Canton Tower of 600 m high. To facilitate the verification, a GPS system is used to calibrate/verify the structural displacement responses measured by the vision-based system. Meanwhile, an accelerometer deployed in the vicinity of the target point also provides frequency-domain information for comparison. Special attention has been given on understanding the influence of the surrounding light on the monitoring results. For this purpose, the experimental tests are conducted in daytime and nighttime through placing the vision-based system outside the tower (in a brilliant environment) and inside the tower (in a dark environment), respectively. The results indicate that the displacement response time histories monitored by the vision-based system not only match well with those acquired by the GPS receiver, but also have higher fidelity and are less noise-corrupted. In addition, the low-order modal frequencies of the building identified with use of the data obtained from the vision-based system are all in good agreement with those obtained from the accelerometer, the GPS receiver and an elaborate finite element model. Especially, the vision-based system placed at the bottom of the enclosed elevator shaft offers better monitoring data compared with the system placed outside the tower. Based on a wavelet filtering technique, the displacement response time histories obtained by the vision-based system are easily decomposed into two parts: a quasi-static ingredient primarily resulting from temperature variation and a dynamic component mainly caused by fluctuating wind load.
机译:民间结构的动态位移响应是建设和在职结构条件评估的重要指标。然而,准确地测量大型民间结构的位移,如高层建筑物仍然是一个具有挑战性的任务。为了应对这个问题,已经为使用工业数码相机和图像处理的基于视觉的系统,用于超空间结构的长距离,远程和实时监测。该提出的系统仅遍历目标点的坐标而不是获取图像信号,因此能够以相对高的采样率实现实时监控和显示位移响应。本研究解决了在600米高的广州塔上发达的基于视觉系统的原位实验验证。为了便于验证,GPS系统用于校准/验证由基于视觉的系统测量的结构位移响应。同时,部署在目标点附近的加速度计也提供了用于比较的频域信息。已经特别注意了解周围光对监测结果的影响。为此目的,实验测试在白天和夜间进行,通过将基于视觉的系统放置在塔(在辉煌的环境中)和塔内(在黑暗环境中)进行。结果表明,基于视觉的系统监视的位移响应时间历史不仅与GPS接收器获取的那些相匹配,而且还具有更高的保真度并且较少噪声损坏。另外,使用从基于视觉的系统获得的数据识别的建筑物的低阶模频频率与从加速度计,GPS接收器和精心的有限元模型获得的那些吻合良好。特别是,与塔外面的系统相比,放置在封闭式电梯轴底部的基于视觉的系统提供更好的监控数据。基于小波滤波技术,基于视觉系统获得的位移响应时间历史易于分解成两部分:主要由温度变化和动态成分产生的准静态成分主要由风负荷波动引起的动态成分。

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