计算机科学
校准
极线几何
投影(关系代数)
结构光三维扫描仪
轮廓仪
失真(音乐)
人工智能
计算
计算机视觉
棋盘
采样(信号处理)
算法
数学
工程类
滤波器(信号处理)
放大器
带宽(计算)
几何学
扫描仪
图像(数学)
统计
机械工程
表面光洁度
计算机网络
作者
Jian Wang,Zonghua Zhang,Wenlong Lu,Xiangqian Jiang
出处
期刊:IEEE-ASME Transactions on Mechatronics
[Institute of Electrical and Electronics Engineers]
日期:2022-10-01
卷期号:27 (5): 4199-4204
被引量:8
标识
DOI:10.1109/tmech.2021.3136617
摘要
Calibration is a fundamental step in fringe projection profilometry development. Among various methods, hybrid calibration is a promising solution given its high flexibility and sensing speed. However, existing approaches suffer the problem of limited accuracy and convenience. For example, customized high-accuracy artifacts with complex operations are usually required. This article reports a hybrid method with improved accuracy and operability, based on a unique back-projection and nonlinear epipolar sampling analysis. This method is performed in three steps: stereo calibration, residual distortion analysis, and phase 3-D mapping tabulation; the last two are pure computations without manual operations. The method is straightforward and cost-effective since only a checkerboard-based stereo calibrating operation is required. It is flexible without checkerboard poses to be known and also highly accurate because systematic distortions are almost compensated. The eventually obtained phase 3-D mapping table is computationally efficient for high-speed sensing. Our experiments confirm that a relative measurement error of 0.01% relative to the field-of-view has been finally achieved.
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