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Quaternary gray-code phase unwrapping for binary fringe projection profilometry

机译:四元格雷码相位展开,用于二值条纹投影轮廓测量

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摘要

In order to achieve a higher speed for fringe projection profilometry, we propose a quaternary gray-code phase unwrapping method using only two defocused binary patterns. We present a weighted optimization algorithm for the design of special binary code patterns. The designed binary patterns are projected on the object with a defocused projector, and interestingly become quaternary patterns which are more expressive gray codes. After the distorted code patterns are captured by a camera, they will undergo our proposed normalization-denoising-clustering process to recover the ideal gray codes. Besides, continuity/geometry constraints are integrated with this phase unwrapping method to further reduce the number of required patterns. The integrated method can recover a high-quality 3D shape with only five binary patterns including three patterns for three-step phase shifting algorithms and two for our phase unwrapping method. The effectiveness of the proposed method is demonstrated by both simulations and experiments.
机译:为了实现条纹投影轮廓仪的更高速度,我们提出了仅使用两个散焦二进制图案的四元格雷码相位展开方法。我们提出了一种特殊的二进制代码模式设计的加权优化算法。使用散焦的投影仪将设计的二进制图案投影到对象上,并且有趣的是变成四进制图案,它们是更具表现力的格雷码。在摄像机捕获了失真的代码模式之后,它们将接受我们建议的归一化降噪聚类过程,以恢复理想的格雷码。此外,连续性/几何约束与该相位展开方法集成在一起,以进一步减少所需图案的数量。该集成方法仅使用五个二进制模式即可恢复高质量的3D形状,其中三个模式用于三步相移算法,而两个模式用于我们的相位展开方法。仿真和实验均证明了该方法的有效性。

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