绝对相位
希尔伯特变换
轮廓仪
相(物质)
相位展开
算法
外差(诗歌)
结构光三维扫描仪
光学
计算机科学
投影(关系代数)
干涉测量
相位噪声
计算机视觉
材料科学
物理
声学
表面光洁度
滤波器(信号处理)
量子力学
复合材料
作者
Xianglin Meng,Fei Wang,Junyan Liu,Mingjun Chen,Yang Wang
摘要
Digital fringe projection profilometry based on phase-shifting technology is a reliable method for complex shape measurement, and the phase is one of the most important factors affecting measurement accuracy. The calculation of the absolute phase depends on the calculation of the wrapped phase and encoding technology. In this paper, a technique of obtaining the absolute phase of multi-frequency heterodyne fringe images using the Hilbert transform is presented. Since the wrapped phase can be calculated from only one fringe image of each frequency, the method does not need phase-shifting. The absolute phase can be obtained from the wrapped phase by applying the heterodyne method. The measurement time and computational complexity are dramatically reduced, the measurement efficiency is greatly improved, and this benefit from the number of images is greatly reduced. The experimental results show that the method presented in this paper performs well in the application, and the accuracy is no different from that of the phase-shifting method while the efficiency is greatly improved.
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