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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Hybrid Method for Phase-Height Relationship in 3D Shape Measurement using Fringe Pattern Projection
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Hybrid Method for Phase-Height Relationship in 3D Shape Measurement using Fringe Pattern Projection

机译:条纹图案投影的3D形状测量中相高关系的混合方法

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摘要

A height estimating function is proposed based on geometric analysis for a three-dimensional (3-D) measurement system using a digital light processing (DLP) projector and a camera. 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. The proposed method has one function per image line instead of one function per image pixel. 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 error of the modeling function is within ±0.1 mm when the x-z working range is 100×50 mm. Therefore, the proposed method can dramatically reduce the number of mapping functions needed for 3-D measurement using the geometric relationship between the projector and camera.
机译:针对使用数字光处理(DLP)投影仪和照相机的三维(3-D)测量系统,基于几何分析提出了高度估计功能。所提出的3-D形状测量方法是将几何参数测量方法和最小二乘法相结合的混合方法。该方法通过平面分析将一条线的相位与高度关系使用,并使用最小二乘法估算相关参数。所提出的方法每图像线具有一个功能,而不是每个图像像素具有一个功能。将投影仪的正弦条纹图案投影到物体上,并根据相机图像计算出测量点的相位。然后,将条纹图案的相位与测量点的高度之间的关系描述为像平面上的水平坐标的参数。因此,可以获得物体的3-D形状。我们的实验表明,当x-z工作范围为100×50 mm时,建模函数的误差在±0.1 mm之内。因此,所提出的方法可以利用投影仪和照相机之间的几何关系显着减少3-D测量所需的映射功能。

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