基于平面分析的条纹投影三维形状测量相高关系

B. Chung, Yoon-Chang Park, Jin-Yeong Do
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摘要

在基于数字光处理(DLP)投影仪和摄像机的三维测量系统中,提出了基于几何分析的高度估计函数。所提出的三维形状测量方法是一种将几何参数测量法与最小二乘法相结合的混合方法。该方法通过平面分析,利用直线的相位-高度关系,利用最小二乘法估计相关参数。将投影仪的正弦条纹图案投射到目标上,并根据相机图像计算测量点的相位。然后,将条纹相位与测点高度的关系描述为像平面上水平坐标的参数。从而可以得到物体的三维形状。我们的实验表明,给定的x-z平面的建模误差在±0.1 mm以内。整个工作空间的模型可以用几个平面模型来表示,因为沿y轴的所有x-z平面模型几乎是相同的。因此,该方法可以大大减少三维测量所需的映射函数的数量。
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Phase-height relationship by plane analysis in 3D shape measurement using fringe pattern projector
In a three-dimensional(3-D) measurement system based on a digital light processing (DLP) projector and a camera, a height estimating function is proposed based on geometric analysis. The proposed 3-D shape measurement method is a hybrid method that combines the geometric parameter measuring method and the least squares method. This method uses the phase-to-height relationship for one line by plane analysis, and the related parameters are estimated using the least squares method. Sinusoidal fringe patterns of the projector are projected on the object, and the phase of the measuring point is calculated from the camera image. Then, the relationship between the phase by fringe patterns and the height of the measuring point is described as a parameter of the horizontal coordinate on the image plane. Thus, the 3-D shape of the object can be obtained. Our experiments show that the modeling errors for the given x-z plane are within ±0.1 mm. The model for the entire working space can be represented by several plane models because all the x-z plane models along the y-axis are nearly the same. Therefore, the proposed method can dramatically reduce the number of mapping functions needed for 3-D measurement.
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