三维体表测量系统标定图像预处理

Xinran Liu, Ping Zhou, Tongjing Zhu
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引用次数: 1

摘要

与其他结构光技术相比,基于相位测量轮廓术的三维成像技术具有许多优点。测量精度常被用作评价三维成像系统的主要性能指标。为了获得满意的精度,本文对误差源进行了分析,并针对误差源的三个方面提出了以下三种方法。利用伽玛预编码处理消除条纹图案的伽玛失真,利用多频外差原理减小皮肤颜色和体表非均匀反射率的影响。此外,提出了一种基于亚像素轮廓检测的方法,可以准确提取校准图像中椭圆图案的边缘。实验结果表明,测量系统的均方根误差(RMS)达到0.01 mm,获得了更光滑的车身表面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Calibration image pre-processing in 3D body surface measurement system
The three-dimensional (3D) imaging technique based on phase measuring profilometry has numerous advantages in comparison with other structured light techniques. Measurement accuracy is often used as the primary performance index to evaluate three-dimensional imaging systems. To obtain satisfactory accuracy, the error sources are analyzed and the following three methods related to three aspects of the error source are proposed in this paper. Gamma pre-encoding process is used to eliminate gamma distortion of fringe patterns, and multi-frequency heterodyne principle is applied to reduce the influence of skin color and non-uniform reflectivity of the body surface. In addition, a subpixel contour detection based method is proposed, which accurately extracts the edge of elliptical pattern in calibration images. The experimental results show that the root mean square (RMS) error of the measurement system reaches 0.01 mm, and smoother body surface is obtained.
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