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A new reconstruction method based on fringe projection of three-dimensional measuring system

机译:基于三维测量系统条纹投影的新重构方法

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This paper presents a new reconstruction method of three-dimensional measuring system, with the simple calibration process, whole-field calibration and fast reconstruction. First, we project a sinusoidal fringe pattern on the surface of the calibration target within the scope of a calibrated field. At the same time, camera captures fringe images on the planar target. Then, we extract image coordinates and absolute phase values of the feature point of planar target, and obtain camera parameters and world coordinates by using image coordinates. Next, we use fitting polynomials to match the spatial relationships among image coordinates, absolute phases and world coordinates from planar target, solve the parameters from fitting equations. Finally, we solve the absolute phase values of object's surface in phase shifting and gray coding techniques, substitute it into fitting equations and reconstruct 3D shape of object's surface. The experimental results show that this reconstruction method is simple, with high precision. Most of all, the calibration target can be placed arbitrarily within entire calibrated fields in the calibration procedure.
机译:本文提出了一种新的三维测量系统重建方法,该方法具有标定过程简单,全场标定和快速重建的优点。首先,我们在校准场的范围内在校准目标的表面上投影正弦条纹图案。同时,相机会捕获平面目标上的条纹图像。然后,我们提取图像坐标和平面目标特征点的绝对相位值,并使用图像坐标获得相机参数和世界坐标。接下来,我们使用拟合多项式来匹配来自平面目标的图像坐标,绝对相位和世界坐标之间的空间关系,并通过拟合方程求解参数。最后,我们通过相移和灰度编码技术解决了物体表面的绝对相位值,将其代入拟合方程,并重建了物体表面的3D形状。实验结果表明,该重建方法简单,精度高。最重要的是,可以在校准过程中将校准目标任意放置在整个校准字段中。

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