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基于条纹投影轮廓术的相位映射改进投影仪标定方法。

An Improved Projector Calibration Method by Phase Mapping Based on Fringe Projection Profilometry.

机构信息

Fujian Key Laboratory of Special Energy Manufacturing, Huaqiao University, Xiamen 361021, China.

Xiamen Key Laboratory of Digital Vision Measurement, Huaqiao University, Xiamen 361021, China.

出版信息

Sensors (Basel). 2023 Jan 19;23(3):1142. doi: 10.3390/s23031142.

Abstract

Aiming at the problem of the low accuracy of projector calibration in a structured light system, an improved projector calibration method is proposed in this paper. One of the key ideas is to estimate the sub-pixel coordinates in the projector image plane using local random sample consensus (RANSAC). A bundle adjustment (BA) algorithm is adopted to optimize the calibration parameters to further improve the accuracy and robustness of the projector calibration. After system calibration and epipolar rectification, the mapping relationship between the pixel coordinates and the absolute phase in the projector image plane is established by using cubic polynomial fitting, and the disparity is rapidly solved by using the mapping relationship, which not only ensures the measurement accuracy, but also improves the measurement efficiency. The experimental results demonstrated that the average re-projection error after optimization is reduced to 0.03 pixels, and the proposed method is suitable for high-speed 3D reconstruction without the time-consuming homogenous point searching.

摘要

针对结构光系统中投影仪标定精度低的问题,本文提出了一种改进的投影仪标定方法。其中一个关键思想是使用局部随机抽样一致(RANSAC)估计投影仪图像平面中的亚像素坐标。采用捆绑调整(BA)算法优化标定参数,进一步提高投影仪标定的精度和鲁棒性。系统标定和极线校正后,通过三次多项式拟合建立投影仪图像平面上像素坐标与绝对相位之间的映射关系,利用映射关系快速求解视差,不仅保证了测量精度,而且提高了测量效率。实验结果表明,优化后的平均重投影误差降低到 0.03 像素,该方法适用于高速 3D 重建,无需耗时的均匀点搜索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2ce/9920907/85bb05155e6e/sensors-23-01142-g001.jpg

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