首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >3D shape measurement based on structured light projection applying polynomial interpolation technique
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3D shape measurement based on structured light projection applying polynomial interpolation technique

机译:基于多项式插值技术的基于结构化光投影的3D形状测量

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摘要

Because of the intrinsic drawbacks of existing 3D measurement methods, which are based on structured light projection, they often need precise linear z stage or other precise devices involvement, and the projector's parameter or relative position between projector and camera needs to be calibrated; therefore, the system costs very high and the processing time is very long. In this paper, we present a 3D shape measurement method based on structured light projection applying polynomial interpolation technique. We have deduced that phase and depth coordinates meet a polynomial relation, and the relation is used to calibrate relative position between camera and projector. The proposed approach can realize 3D shape measurement without projector calibration, without system calibration, and without precise linear z stage to be used. The relative position between camera and projector can be arbitrary, and the only involved device is a plane board. Experiment results validated that the accuracy of the proposed approach is not lower than that of many previous methods, but our approach costs lower and can be set up more easily.
机译:由于基于结构化光投影的现有3D测量方法的固有缺点,因此它们通常需要精确的线性z位移台或其他精确的设备参与,并且投影仪的参数或投影仪与相机之间的相对位置需要进行校准;因此,系统成本很高,并且处理时间很长。在本文中,我们提出了一种基于多项式插值技术的基于结构化光投影的3D形状测量方法。我们推论相位和深度坐标满足多项式关系,并且该关系用于校准相机和投影仪之间的相对位置。所提出的方法可以实现3D形状测量,而无需投影仪校准,系统校准以及没有要使用的精确线性z工作台。相机和投影仪之间的相对位置可以是任意的,唯一涉及的设备是平板。实验结果证明,该方法的准确性不低于许多以前的方法,但我们的方法成本较低,并且可以更轻松地设置。

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