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基于非均匀条纹投影的相位式三维成像系统的简易标定

Simple calibration of a phase-based 3D imaging system based on uneven fringe projection.

机构信息

School of Mechanical Engineering, Hebei University of Technology, Tianjin, China.

出版信息

Opt Lett. 2011 Mar 1;36(5):627-9. doi: 10.1364/OL.36.000627.

Abstract

Phase-based fringe projection metrology systems have been widely used to obtain the shape of 3D objects. One vital step is calibration, which defines the relationship between the phase and depth data. Existing calibration methods are complicated because of the dependence of the relationship on the pixel position. In this Letter, a simple calibration procedure is introduced based on an uneven fringe projection technique, in which the relationship between phase and depth becomes independent of the pixel position and can be represented by a single polynomial function for all pixels. Therefore, given a set of discrete points with a known phase and depth in the measuring volume, the coefficient set of the polynomial function can be determined. A white plate having discrete markers with known separation is used to calibrate the 3D imaging system. Experimental results demonstrate that the proposed calibration method is simple to apply and can build up an accurate relationship between phase and depth data.

摘要

基于相位的条纹投影计量系统已被广泛应用于获取三维物体的形状。一个重要的步骤是校准,它定义了相位和深度数据之间的关系。由于这种关系依赖于像素位置,现有的校准方法比较复杂。在本信中,我们介绍了一种基于非均匀条纹投影技术的简单校准程序,其中相位和深度之间的关系与像素位置无关,可以用单个多项式函数表示所有像素。因此,对于测量体积中具有已知相位和深度的一组离散点,可以确定多项式函数的系数集。使用具有已知间隔的离散标记的白色板来校准三维成像系统。实验结果表明,所提出的校准方法简单易用,可以建立相位和深度数据之间的精确关系。

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