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Adaptive projection intensity adjustment for avoiding saturation in three-dimensional shape measurement

机译:自适应投影强度调节,用于避免三维形状测量饱和度

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Phase-based fringe projection methods have been commonly used for three-dimensional (3D) measurements. However, image saturation results in incorrect intensities in captured fringe pattern images, leading to phase and measurement errors. Existing solutions are complex. This paper proposes an adaptive projection intensity adjustment method to avoid image saturation and maintain good fringe modulation in measuring objects with a high range of surface reflectivities. The adapted fringe patterns are created using only one prior step of fringe-pattern projection and image capture. First, a set of phase-shifted fringe patterns with maximum projection intensity value of 255 and a uniform gray level pattern are projected onto the surface of an object. The patterns are reflected from and deformed by the object surface and captured by a digital camera. The best projection intensities corresponding to each saturated-pixel clusters are determined by fitting a polynomial function to transform captured intensities to projected intensities. Subsequently, the adapted fringe patterns are constructed using the best projection intensities at projector pixel coordinate. Finally, the adapted fringe patterns are projected for phase recovery and 3D shape calculation. The experimental results demonstrate that the proposed method achieves high measurement accuracy even for objects with a high range of surface reflectivities. (C) 2017 Elsevier B.V. All rights reserved.
机译:基于相的边缘投影方法通常用于三维(3D)测量。然而,图像饱和度导致捕获的条纹图案图像中的强度不正确,导致相位和测量误差。现有解决方案很复杂。本文提出了一种自适应投影强度调节方法,以避免图像饱和度,并在测量具有高范围的表面反射率的物体中保持良好的边缘调制。仅使用边缘图案投影和图像捕获的一个现有步骤来创建适应的条纹图案。首先,将具有最大投影强度值的一组相移条纹图案为255和均匀的灰度图案被突出到物体的表面上。图案由物体表面反射并变形并由数码相机捕获。通过拟合多项式函数来确定对应于每个饱和像素集群的最佳投影强度以将捕获的强度转换为投影强度。随后,使用投影仪像素坐标的最佳投影强度来构造适应的条纹图案。最后,将适应的条纹图案投影用于相位恢复和3D形状计算。实验结果表明,所提出的方法即使对于具有高范围的表面反射率的物体,也可以实现高测量精度。 (c)2017年Elsevier B.V.保留所有权利。

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