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基于相移编码的二加二条纹投影轮廓术。

Two-plus-two fringe projection profilometry based on phase-shifted coding.

作者信息

Zhang Hechen, Zhou Jin, Jia Dan, Huang Jinlong, Yuan Jin

机构信息

Institute of Optics Electronics, Chinese Academy of Sciences, Chengdu, 610207, China.

出版信息

Sci Rep. 2024 Sep 18;14(1):21768. doi: 10.1038/s41598-024-71427-x.

Abstract

In fringe projection profilometry based on temporal phase unwrapping, determining a fringe order map commonly requires a large number of fringes. To reduce the fringe number, this paper proposes a concise absolute phase retrieval algorithm just by projecting four fringes. The first two orthogonal fringes with relatively large frequency can collect reliable height information. The second two fringes are designed the same as the first two, but the only difference is that each 2π-phase of them is shifted by a unique amount, which can robustly label a large number of fringe orders. For decoding the fringes, we develop an average intensity one-time extraction algorithm, which allows for the rapid acquisition of the two pairs of alternating current components. From this, the wrapped phase containing height information and the stair-coded phase providing fringe orders can be directly extracted by arctangent operation in a point-to-point manner. Furthermore, we also develop a universal fringe order correction algorithm that can simultaneously correct the common errors and the misalignment between the wrapped phase and fringe orders. Experiment results demonstrate that this method achieves comparable accuracy and adaptability to the phase-coding method, while utilizing two fewer fringes.

摘要

在基于时间相位展开的条纹投影轮廓术中,确定条纹顺序图通常需要大量条纹。为了减少条纹数量,本文提出了一种仅通过投影四条条纹的简洁绝对相位检索算法。前两条频率相对较高的正交条纹可以收集可靠的高度信息。后两条条纹设计得与前两条相同,但唯一的区别是它们的每个2π相位都偏移了一个唯一的量,这可以稳健地标记大量条纹顺序。为了解码条纹,我们开发了一种平均强度一次性提取算法,该算法允许快速获取两对交流分量。由此,可以通过逐点反正切运算直接提取包含高度信息的包裹相位和提供条纹顺序的阶梯编码相位。此外,我们还开发了一种通用的条纹顺序校正算法,该算法可以同时校正包裹相位和条纹顺序之间的常见误差和错位。实验结果表明,该方法在使用少两条条纹的情况下,实现了与相位编码方法相当的精度和适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec51/11412967/caf645d583cb/41598_2024_71427_Fig1_HTML.jpg

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