远心结构光系统的像素校准方法。

Applied Optics Pub Date : 2024-02-27 DOI:10.1364/ao.509535
Yuchen Yang, Song Zhang
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引用次数: 0

摘要

本文介绍了一种像素级校准方法,该方法专为结构光系统而设计,该系统利用了一个装有远心镜头的照相机。在校准过程中,一个白色平面和一个带有圆点的平面作为校准目标。通过使用圆点的传统照相机校准方法推导出针孔投影仪的属性,并通过迭代优化的三维特征点估算确定照相机的属性后,将白色表面校准目标定位在不同的位置,并使用初始照相机和投影仪校准数据进行重建。每个三维重建都与虚拟理想平面相匹配,并进一步用于创建像素相位坐标映射。为了优化校准精度,采用了校准目标的各种角度姿势来完善初始结果。实验结果表明,所提出的方法可为使用远心透镜的结构光系统提供较高的校准精度。
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Pixelwise calibration method for a telecentric structured light system.
This paper introduces a pixelwise calibration method designed for a structured light system utilizing a camera attached with a telecentric lens. In the calibration process, a white flat surface and a flat surface with circle dots serve as the calibration targets. After deriving the properties of the pinhole projector through a conventional camera calibration method using circle dots and determining the camera's attributes via 3D feature points estimation through iterative optimizations, the white surface calibration target was positioned at various poses and reconstructed with initial camera and projector calibration data. Each 3D reconstruction was fitted with a virtual ideal plane that was further used to create the pixelwise phase-to-coordinate mapping. To optimize the calibration accuracy, various angled poses of the calibration target are employed to refine the initial results. Experimental findings show that the proposed approach offers high calibration accuracy for a structured light system using a telecentric lens.
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