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Dynamic 3D Scanning Based on Optical Tracking

机译:基于光学跟踪的动态3D扫描

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摘要

In order to solve the problem that traditional binocular vision 3D scanning requires multiple scans and then registration, a dynamic 3D scanning method based on optical tracking is proposed. The first part is monocular optical scanning, which uses laser stripes as the active light source to achieve the function of 3D scanning. The second part is monocular optical tracking, which realizes the calculation and tracking of the position and posture of the scanning device, and instantly converts the point cloud data obtained by the scanning camera to the tracking camera coordinate system, realizing real-time data registration during the dynamic scanning process. The experimental results show that this method can achieve dynamic scanning to obtain the point cloud information of the object. The accuracy of the scan is about 1 mm in the direction of the XOY coordinate plane of the coordinate system and about 0.08 mm in the direction of the z-axis. At the same time, the scanning time can be saved by 50% compared with the traditional binocular vision 3D scanning method.
机译:为了解决传统双目视觉3D扫描需要多次扫描的问题,然后提出了一种基于光学跟踪的动态3D扫描方法。第一部分是单眼光学扫描,其使用激光条带作为有源光源来实现3D扫描的功能。第二部分是单眼光学跟踪,其实现了扫描装置的位置和姿势的计算和跟踪,并立即将扫描相机获得的点云数据转换为跟踪摄像机坐标系,实现了实时数据登记动态扫描过程。实验结果表明,该方法可以实现动态扫描以获得对象的点云信息。坐标系的XOY坐标平面方向的扫描的精度约为1mm,沿z轴方向约0.08mm。同时,与传统双目视觉3D扫描方法相比,扫描时间可以节省50%。

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