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Dynamic testing of a laboratory model via vision-based sensing

机译:通过基于视觉的感测对实验室模型进行动态测试

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摘要

In the class of not-contact sensors, the techniques of vision-based displacement estimation enable one to gather dense global measurements of static deformation as well as of dynamic response. They are becoming more and more available thanks to the ongoing technology developments. In this work, a vision system, which takes advantage of fast-developing digital image processing and computer vision technologies and provides high sample rate, is implemented to monitor the 2D plane vibrations of a reduced scale frame mounted on a shaking table as available in a laboratory. The physical meanings of the camera parameters, the trade-off between the system resolution and the field-of-view, and the upper limitation of marker density are discussed. The scale factor approach, which is widely used to convert the image coordinates measured by a vision system in the unit of pixels into space coordinates, causes a poor repeatability of the experiment, an unstable experiment precision, and therefore a global poor flexibility. To overcome these problems, two calibrations approaches are introduced: registration and direct linear transformation. Based on the constructed vision-based displacement measurement system, several experiments are carried out to monitor the motion of a scale-reduced model on which dense markers are glued. The experiment results show that the proposed system can capture and successfully measure the motion of the laboratory model within the required frequency band.
机译:在非接触式传感器类别中,基于视觉的位移估计技术使人们能够收集静态变形以及动态响应的密集全局度量。由于技术的不断发展,它们变得越来越可用。在这项工作中,实现了一种视觉系统,该系统利用了快速发展的数字图像处理和计算机视觉技术,并提供了高采样率,以监视安装在摇床上的缩小比例框架的二维平面振动。实验室。讨论了相机参数的物理含义,系统分辨率和视野之间的权衡以及标记密度的上限。比例因子方法已广泛用于将视觉系统以像素为单位的图像坐标转换为空间坐标,这导致实验的可重复性差,实验精度不稳定,因此导致整体灵活性差。为了克服这些问题,引入了两种校准方法:配准和直接线性变换。基于构造的基于视觉的位移测量系统,进行了一些实验来监视缩尺模型的运动,在缩尺模型上粘贴了密集的标记。实验结果表明,该系统可以捕获并成功测量实验室模型在所需频带内的运动。

著录项

  • 来源
    《Engineering Structures》 |2014年第2期|113-125|共13页
  • 作者单位

    College of Physics and Information Engineering, and Institute of Micro-Nano Devices & Solar Cells, Fuzhou University, Fuzhou 350108, China,Dept. of Civil Engineering and Architecture, University of Pavia, ViaFerrata 1,27100Pavia, Italy;

    Dept. of Civil Engineering and Architecture, University of Pavia, ViaFerrata 1,27100Pavia, Italy;

    Dept. of ASTRA, University of Catania, Piazza Federico di Svevia, 96100 Siracusa, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vision-based measurement; Non-contact sensor; Structural health monitoring; Direct linear transformation; Registration;

    机译:基于视觉的测量;非接触式传感器;结构健康监测;直接线性变换;注册;

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