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Fast 3D Surface Measurement with Wrapped Phase and Pseudorandom Image

机译:具有包裹相位和伪随机图像的快速3D表面测量

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摘要

Balancing the accuracy and speed of three-dimensional (3D) surface measurement of objects is crucial in many important applications. In this paper, we present a wrapped phase and pseudorandom image method and develop an experimental system aiming to avoid the process of phase unwrapping. Our approach can reduce the length of image sequences and improve the speed of pattern projection and image acquisition and can be used as a good candidate for high-speed 3D measurement. The most critical step in our new methodology is using the wrapped phase and the epipolar constraint between one camera and a projector, which can obtain several candidate 3D points within the measurement volume (MV). The false points from the obtained candidate 3D points can be eliminated by the pseudorandom images. A systematic accuracy with MV better than 0.01 mm is achievable. 3D human body measurement results are given to confirm the fast speed of image acquisition capability.
机译:在许多重要应用中,平衡对象的三维(3D)表面测量的精度和速度至关重要。在本文中,我们提出了一种包裹相位和伪随机图像方法,并开发了一个旨在避免相位展开过程的实验系统。我们的方法可以减少图像序列的长度,提高图案投影和图像采集的速度,并且可以用作高速3D测量的理想选择。在我们的新方法中,最关键的步骤是使用包裹相位和一台摄像机与一台投影仪之间的对极约束,这可以在测量体积(MV)内获得多个候选3D点。可以通过伪随机图像消除从获得的候选3D点中得到的错误点。 MV优于0.01 mm的系统精度是可以实现的。给出3D人体测量结果以确认图像采集功能的快速速度。

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