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Uneven fringe projection for efficient calibration in high-resolution 3D shape metrology

机译:不均匀的条纹投影,可在高分辨率3D形状计量学中进行有效校准

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摘要

A novel uneven fringe projection technique is presented whereby nonuniformly spaced fringes aregenerated at a digital video projector to give evenly spaced fringes in the measurement volume. The proposed technique simplifies the relation between the measured phase and the object's depth independent of pixel position. This method needs just one coefficient set for calibration and depth calculation. With uneven fringe projection the shape data are referenced to a virtual plane instead of a physical reference plane, so an improved measurement with lower uncertainty is achieved. Further, the method can be combined with a radial lens distortion model. The theoretical foundation of the method is presented and experimentally validated to demonstrate the advantages of the uneven fringe projection approach compared with existing methods. Measurement results on a National Physical Laboratory (UK) "step standard" confirm the measurement uncertainty using the proposed method.
机译:提出了一种新颖的不均匀条纹投影技术,由此在数字视频投影仪上产生不均匀间隔的条纹,以在测量体积中给出均匀间隔的条纹。所提出的技术简化了测量相位与物体深度之间的关系,而与像素位置无关。该方法只需要设置一个系数即可进行校准和深度计算。在条纹投影不均匀的情况下,形状数据参考的是虚拟平面,而不是物理的参考平面,因此可以实现具有较低不确定性的改进测量。此外,该方法可以与径向透镜畸变模型结合。提出了该方法的理论基础并进行了实验验证,以证明不均匀条纹投影方法与现有方法相比的优势。国家物理实验室(英国)“步骤标准”上的测量结果证实了使用所提出方法的测量不确定度。

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