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Dynamic displacement measurement of large-scale structures based on the Lucas-Kanade template tracking algorithm

机译:基于Lucas-Kanade模板跟踪算法的大型结构动力位移测量

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The development of optics and computer technologies enables the application of the vision-based technique that uses digital cameras to the displacement measurement of large-scale structures. Compared with traditional contact measurements, vision-based technique allows for remote measurement, has a non-intrusive characteristic, and does not necessitate mass introduction. In this study, a high-speed camera system is developed to complete the displacement measurement in real time. The system consists of a highspeed camera and a notebook computer. The high-speed camera can capture images at a speed of hundreds of frames per second. To process the captured images in computer, the Lucas-Kanade template tracking algorithm in the field of computer vision is introduced. Additionally, a modified inverse compositional algorithm is proposed to reduce the computing time of the original algorithm and improve the efficiency further. The modified algorithm can rapidly accomplish one displacement extraction within 1 ms without having to install any pre-designed target panel onto the structures in advance. The accuracy and the efficiency of the system in the remote measurement of dynamic displacement are demonstrated in the experiments on motion platform and sound barrier on suspension viaduct Experimental results show that the proposed algorithm can extract accurate displacement signal and accomplish the vibration measurement of large-scale structures.
机译:光学和计算机技术的发展使基于视觉的技术得以应用,该技术将数码相机用于大型结构的位移测量。与传统的接触式测量相比,基于视觉的技术可以进行远程测量,具有非侵入性的特征,并且不需要大量引入。在这项研究中,开发了一种高速摄像系统来实时完成位移测量。该系统由高速相机和笔记本计算机组成。高速相机可以每秒数百帧的速度捕获图像。为了处理计算机中捕获的图像,介绍了计算机视觉领域的Lucas-Kanade模板跟踪算法。另外,提出了一种改进的逆合成算法,以减少原始算法的计算时间,并进一步提高效率。修改后的算法可以在1毫秒内快速完成一次位移提取,而无需事先将任何预先设计的目标面板安装到结构上。通过在运动平台和悬架高架桥上的声屏障上的实验证明了该系统在动态位移远程测量中的准确性和效率。实验结果表明,该算法可以提取准确的位移信号并完成大规模的振动测量。结构。

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