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Development of Quick Three-Dimensional Shape Measurement Projection Mapping System Using a Whole-Space Tabulation Method

机译:使用全空间表格方法开发快速三维形状测量投影映射系统

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摘要

A grating projection method is often used as a highly accurate 3D shape measurement method. A real-time 3D shape measurement system can also be applied to measure a wide and smooth curved surface, such as in sheet metal processing. In this case, operators take much effort to recognize the positions of some problem areas on an object from a measured result displayed on a monitor. This study develops a projection mapping system projecting an evaluation image, such as height, displacement, gradient, curvature factor, and area of defect, onto an object. These evaluation results are obtained from the measured 3D shape. The evaluation image should be deformed according to the 3D shape of the object because the camera and projector positions are different. Therefore, this study proposes a method to quickly produce a deformed evaluation image using a whole-space tabulation method. A coordinate transform table allowed the conversion of a camera pixel coordinate into a projector pixel coordinate by using reference planes to apply deformation to the evaluation image according to the measured 3D shape. The quick coordinate transformation from a camera pixel coordinate into a projector pixel coordinate was realized using the coordinate transform table. This is a key idea of this study. It was confirmed that the coordinate transformation from the camera pixel coordinate to the projector coordinate could be performed in 4.5 ms using the coordinate transform table. In addition, 3D shape measurement projection mapping was applied to a curved sheet metal with small deformation, and the deformation part was clearly shown by projecting the height distribution. The architecture and the experimental results are shown herein.
机译:光栅投影方法通常用作高精度的3D形状测量方法。还可以应用实时3D形状测量系统来测量宽且平滑的曲面,例如金属板加工。在这种情况下,运营商需要大力努力从监视器上显示的测量结果识别对象上的某些问题区域的位置。该研究开发了投影映射系统,将评估图像投影到对象上的评估图像,例如高度,位移,梯度,曲率因子和缺陷区域。这些评估结果是从测量的3D形状获得的。评估图像应根据对象的3D形状变形,因为相机和投影仪位置是不同的。因此,本研究提出了一种使用全空间列表方法快速产生变形评估图像的方法。坐标变换表允许通过使用参考平面将相机像素坐标转换成投影仪像素坐标,以根据测量的3D形状向评估图像施加变形。使用坐标变换表实现了从相机像素坐标坐标的快速坐标变换。这是本研究的关键思想。确认,使用坐标变换表可以在4.5ms中执行来自相机像素坐标的相机像素坐标的坐标变换。另外,将3D形状测量投影映射施加到具有小变形的弯曲金属板,通过突出高度分布清楚地显示变形部分。结构和实验结果如本文所示。

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