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Geometric analysis of influence of fringe directions on phase sensitivities in fringe projection profilometry

机译:条纹方向轮廓测量中条纹方向对相敏度影响的几何分析

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摘要

In fringe projection profilometry, phase sensitivity is one of the important factors affecting measurement accuracy. A typical fringe projection system consists of one camera and one projector. To gain insight into its phase sensitivity, we perform in this paper a strict analysis in theory about the dependence of phase sensitivities on fringe directions. We use epipolar geometry as a tool to derive the relationship between fringe distortions and depth variations of the measured surface, and further formularize phase sensitivity as a function of the angle between fringe direction and the epipolar line. The results reveal that using the fringes perpendicular to the epipolar lines enables us to achieve the maximum phase sensitivities, whereas if the fringes have directions along the epipolar lines, the phase sensitivities decline to zero. Based on these results, we suggest the optimal fringes being circular-arc-shaped and centered at the epipole, which enables us to give the best phase sensitivities over the whole fringe pattern, and the quasi-optimal fringes, being straight and perpendicular to the connecting line between the fringe pattern center and the epipole, can achieve satisfyingly high phase sensitivities over whole fringe patterns in the situation that the epipole locates far away from the fringe pattern center. The experimental results demonstrate that our analyses are practical and correct, and that our optimized fringes are effective in improving the phase sensitivities and, further, the measurement accuracies. (C) 2016 Optical Society of America
机译:在条纹投影轮廓仪中,相位灵敏度是影响测量精度的重要因素之一。典型的条纹投影系统由一台摄像机和一台投影仪组成。为了深入了解其相位灵敏度,我们在理论上对相位灵敏度在条纹方向上的依赖性进行了严格的分析。我们使用对极几何作为工具来推导条纹畸变和被测表面的深度变化之间的关系,并进一步将相位灵敏度公式化为条纹方向和对极线之间的角度的函数。结果表明,使用垂直于对极线的条纹可以​​使我们获得最大的相位灵敏度,而如果条纹沿沿极线的方向,则相位灵敏度将降至零。根据这些结果,我们建议最佳条纹为圆弧形,并以子极为中心,这使我们能够在整个条纹图案上获得最佳的相位灵敏度,而准最优条纹则与直线垂直并垂直于在子极远离条纹图案中心的情况下,条纹图案中心与子极之间的连接线可以在整个条纹图案上获得令人满意的高相位灵敏度。实验结果表明,我们的分析是实用且正确的,并且我们优化的条纹可有效改善相位灵敏度,并进一步提高测量精度。 (C)2016美国眼镜学会

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