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3D Reconstruction of Rotating Objects Based on Line Structured-Light Scanning

机译:基于线结构光扫描的旋转物体3D重建

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In order to achieve the 3D reconstruction of objects, a rotation scanning method based on line structured-light is proposed. Firstly, the line laser is installed together with the camera's optical axis in a certain angle, the measured object is fixed on the rotating motion module, the camera is used to photograph the light stripe which is on the surface of the object under the different rotating phase, and the image processing and method extracting the center of light in a circular kernel is used. The light-spots are restored to the 3D point cloud according to the laser plane parameters and the camera's internal and external parameters calibrated before. According to the rotational phase recorded, 3D point cloud is reconstructed around the rotating shaft for 3D relative position. The paper designs a simple device for 3D reconstruction of sphere based on line structured-light scanning, and the accuracy of 3D point cloud recovery algorithm is tested.
机译:为了实现物体的3D重建,提出了一种基于线结构光的旋转扫描方法。首先,将线激光器与相机的光轴以一定角度安装在一起,将被测物体固定在旋转运动模块上,相机用于在不同旋转条件下拍摄物体表面的光条相位,然后使用图像处理和方法提取圆形核中的光心。根据激光平面参数以及之前校准的相机内部和外部参数,将光斑恢复到3D点云。根据记录的旋转相位,围绕3D相对位置的旋转轴重建3D点云。本文设计了一种简单的基于线结构光扫描的球体3D重建设备,并测试了3D点云恢复算法的准确性。

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