首页> 外文会议>Electronics, Communications and Computer (CONIELECOMP), 2010 >A comparison between local and global phase unwrapping algorithms in a modified Fourier Transform Profilometry Method
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A comparison between local and global phase unwrapping algorithms in a modified Fourier Transform Profilometry Method

机译:改进傅里叶变换轮廓分析法中局部和全局相位展开算法的比较

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This work present a modified Fourier Transform Profilometry method, in particular, the development of local and global phase unwrapping algorithms has been considered, because this is one of the major challenges when this method is applied. The basic idea is to project a sinusoidal fringe pattern with a known spatial frequency on the object to digitize, and then a vision system captures and processes the image to obtain the object's depth information. First, the fringe pattern is projected on a reference plane then an image is acquired, later the object to digitize is placed in front of the reference plane and then another image is acquired. The fringe pattern is distorted due to the object's irregular shape. One of the main difficulties to face is the high frequency content in the unwrapping process. This effect can be minimized by knowing the spatial frequency and its multiples. Here, we propose to implement global and local phase unwrapping algorithms to overcome the high frequency problems. These algorithms are part of the modified Fourier Transform Profilometry Method (FTP), where the resulting phase difference of the acquired and processed images have the information of the object's depth. Some tests with computer generated and real objects with different geometries are carried out to verify the proposed methodology, considering the factors that mostly affect the method.
机译:这项工作提出了一种改进的傅里叶变换轮廓分析方法,尤其是考虑了局部和全局相位展开算法的开发,因为这是应用该方法时的主要挑战之一。基本思想是在物体上投影具有已知空间频率的正弦条纹图案以进行数字化,然后视觉系统捕获并处理图像以获得物体的深度信息。首先,将条纹图案投影到参考平面上,然后获取图像,然后将要数字化的对象放置在参考平面的前面,然后获取另一幅图像。条纹图案由于对象的不规则形状而变形。面临的主要困难之一是解包过程中的高频成分。通过了解空间频率及其倍数,可以将这种影响最小化。在这里,我们建议实现全局和局部相位展开算法,以克服高频问题。这些算法是改进的傅里叶变换轮廓测量法(FTP)的一部分,其中所获取和处理的图像的最终相位差具有对象深度的信息。考虑到主要影响该方法的因素,使用计算机生成的和具有不同几何形状的真实对象进行了一些测试,以验证所提出的方法。

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