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A Vision-Based Sensor for Noncontact Structural Displacement Measurement

机译:基于视觉的非接触式结构位移测量传感器

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摘要

Conventional displacement sensors have limitations in practical applications. This paper develops a vision sensor system for remote measurement of structural displacements. An advanced template matching algorithm, referred to as the upsampled cross correlation, is adopted and further developed into a software package for real-time displacement extraction from video images. By simply adjusting the upsampling factor, better subpixel resolution can be easily achieved to improve the measurement accuracy. The performance of the vision sensor is first evaluated through a laboratory shaking table test of a frame structure, in which the displacements at all the floors are measured by using one camera to track either high-contrast artificial targets or low-contrast natural targets on the structural surface such as bolts and nuts. Satisfactory agreements are observed between the displacements measured by the single camera and those measured by high-performance laser displacement sensors. Then field tests are carried out on a railway bridge and a pedestrian bridge, through which the accuracy of the vision sensor in both time and frequency domains is further confirmed in realistic field environments. Significant advantages of the noncontact vision sensor include its low cost, ease of operation, and flexibility to extract structural displacement at any point from a single measurement.
机译:传统的位移传感器在实际应用中存在局限性。本文开发了一种用于结构位移的远程测量的视觉传感器系统。采用了一种称为上采样互相关的高级模板匹配算法,并将其进一步开发为用于从视频图像中实时提取位移的软件包。通过简单地调整上采样因子,可以容易地获得更好的子像素分辨率以提高测量精度。视觉传感器的性能首先通过框架结构的实验室振动台测试进行评估,该测试通过使用一台摄像机跟踪高对比度的人造目标或低对比度的自然目标来测量所有楼层的位移。结构表面,例如螺栓和螺母。在单个摄像机测量的位移与高性能激光位移传感器测量的位移之间观察到令人满意的协议。然后,在铁路桥梁和人行天桥上进行了现场测试,通过这些测试,可以进一步在现实的现场环境中确认视觉传感器在时域和频域上的准确性。非接触式视觉传感器的显着优势包括其低成本,易于操作以及从单个测量中提取任意点结构位移的灵活性。

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