基于多变量灰度编码相位编码的三维测量技术

Fei Yan, Gao Ze, Tian Ye, Wen Jie, Jia Liu
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摘要

针对传统时相解包法在高频条纹相位解包中存在的效率低、误差大、误码率高等问题,本文提出了一种在相域中量化多变量灰度编码的相位编码方法。我们不是将阶跃相位嵌入正弦波模式中,而是将多变量灰度编码模式嵌入正弦波模式中,从而在更大程度上降低了相位编码模式中的灰度级,并拓宽了编码模式中每个阶跃之间的纵向相位宽度。摄像机捕捉到变形的编码图案后,通过相位差和灰度级对变形的多元灰度编码进行去量化,对量化后的多元灰度编码进行解码,得到高质量的高频阶梯码字。通过仿真和实验,我们将所提出的方法与各种经典的相位解包方法进行了综合比较。从解码误差、测量效果和投影模式等方面验证了所提方法的有效性。
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Three-dimensional measurements based on multivariate gray code phase encoding
To address the problems of low efficiency, large error and high bit error rate (BER) in the phase unwrapping of high-frequency fringes by the traditional time-phase unwrapping method, in this paper we propose a phase coding method that quantizes the multivariate gray code in the phase domain. Instead of embedding the stepped phase into a sinusoidal pattern, we embed the multivariate gray code pattern into a sinusoidal pattern, which reduces the gray levels in the phase coding pattern to a larger extent and widens the longitudinal phase width between each step in the coding pattern. After the camera captures the deformed coding pattern, the deformed multivariate gray code is dequantified by the phase difference and the gray level, and the high-quality high-frequency ladder code word is obtained by decoding the quantized multivariate gray code.In addition, the step code word is superimposed with the binary wrapped phase and then filtered to obtain a correction code word for correcting the phase error. Through simulations and experiments, we comprehensively compare the proposed method with various classical phase unwrapping methods. The effectiveness of the proposed method is verified in terms of the decoding error, the measurement effect, and the projection pattern.
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