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An Improved Method of Gray-Code with Binocular Vision for Workpiece 3D Measurement

机译:一种用于双目视觉的灰度代码改进的3D测量方法

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In order to achieve the requirement of 3D shape measurement for workpiece, such as spray painting, welding and grinding, an improved binocular vision 3D measurement method based on Gray code structured light is proposed. First, the calibration parameters of the binocular camera are calibrated off-line, and then the black-and-white inverse reprojection method is applied to obtain the clear gray code boundary for the traditional structured light boundary fuzzy problem. Then, a fast region block search strategy is proposed for stereo matching to get disparity map. Finally, the bilinear interpolation method is applied to fill the vacancy of disparity map to solve the problem of binocular blind angle measurement, thus obtaining full depth information. The experimental results show that this method can quickly achieve high-precision three-dimensional reconstruction of the workpiece, especially for non-textured and weakly-textured workpiece can obtain better results, to meet the requirement of 3D measurement in the industrial environment.
机译:为了达到对工件进行喷涂,焊接,磨削等3D形状测量的要求,提出了一种基于格雷码结构光的改进的双目3D测量方法。首先,离线校准双目相机的校准参数,然后应用黑白逆投影方法获得传统结构光边界模糊问题的清晰格雷码边界。然后,提出了一种用于立体匹配的快速区域块搜索策略,以得到视差图。最后,采用双线性插值方法填补视差图的空缺,解决了双目盲角测量问题,从而获得了完整的深度信息。实验结果表明,该方法可以快速实现工件的高精度三维重构,特别是对于无纹理和弱纹理的工件可以获得更好的结果,可以满足工业环境中3D测量的要求。

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