Chen Chao, Kong Ya, Wang Huaiwen, Zhang Zonghua
Tianjin Key Laboratory of Refrigeration Technology, Tianjin University of Commerce, Tianjin 300134, China.
School of Mechanical Engineering, Tianjin University of Commerce, Tianjin 300134, China.
Sensors (Basel). 2022 Aug 24;22(17):6370. doi: 10.3390/s22176370.
We propose a method for accurately calibrating a telecentric structured light system consisting of a camera attached to a bilateral telecentric lens and a pin-hole projector. The proposed method can be split into two parts: axial calibration and transverse calibration. The first part is used for building the relationship between phase and depth by means of a planar plate with ring markers on its surface at several different positions in the measuring volume. The second part is used for establishing the relationship between transverse coordinates and pixel positions with the depth offered by a translation stage and the extracted ring centers. Compared with existing methods that require projector calibration, the proposed method can avoid a propagation of the correspondence error between the camera imaging plane and projector imaging plane, thus increasing calibration accuracy. The calibrated telecentric structured light system is further used for three-dimensional (3D) reconstructions of a planar, a ruled surface, and complex surfaces. Experimental results demonstrate that the proposed system calibration method can be used for accurate 3D measurement.
我们提出了一种用于精确校准远心结构光系统的方法,该系统由一个连接到双边远心镜头的相机和一个针孔投影仪组成。所提出的方法可分为两部分:轴向校准和横向校准。第一部分用于通过在测量体积中的几个不同位置处表面带有环形标记的平板来建立相位与深度之间的关系。第二部分用于利用平移台提供的深度和提取的环形中心来建立横向坐标与像素位置之间的关系。与现有的需要投影仪校准的方法相比,所提出的方法可以避免相机成像平面和投影仪成像平面之间对应误差的传播,从而提高校准精度。校准后的远心结构光系统进一步用于平面、直纹面和复杂表面的三维(3D)重建。实验结果表明,所提出的系统校准方法可用于精确的3D测量。