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一种用于基于相位计算的条纹投影成像系统的简单、灵活且自动的三维校准方法。

A simple, flexible and automatic 3D calibration method for a phase calculation-based fringe projection imaging system.

作者信息

Zhang Zonghua, Huang Shujun, Meng Shasha, Gao Feng, Jiang Xiangqian

机构信息

School of Mechanical Engineering, Hebei University of Technology, Tianjin 300130, China.

出版信息

Opt Express. 2013 May 20;21(10):12218-27. doi: 10.1364/OE.21.012218.

Abstract

An important step of phase calculation-based fringe projection systems is 3D calibration, which builds up the relationship between an absolute phase map and 3D shape data. The existing 3D calibration methods are complicated and hard to implement in practical environments due to the requirement of a precise translating stage or gauge block. This paper presents a 3D calibration method which uses a white plate with discrete markers on the surface. Placing the plate at several random positions can determine the relationship of absolute phase and depth, as well as pixel position and X, Y coordinates. Experimental results and performance evaluations show that the proposed calibration method can easily build up the relationship between absolute phase map and 3D shape data in a simple, flexible and automatic way.

摘要

基于相位计算的条纹投影系统的一个重要步骤是三维校准,它建立了绝对相位图和三维形状数据之间的关系。由于需要精确的平移台或量块,现有的三维校准方法很复杂,难以在实际环境中实现。本文提出了一种三维校准方法,该方法使用表面带有离散标记的白板。将白板放置在几个随机位置可以确定绝对相位与深度以及像素位置与X、Y坐标之间的关系。实验结果和性能评估表明,所提出的校准方法能够以简单、灵活和自动的方式轻松建立绝对相位图和三维形状数据之间的关系。

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