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Omnidirectional shape measurement using reliability evaluation value in Fourier transform

机译:在傅里叶变换中使用可靠性评估值的全向形状测量

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Non-contacting shape measurement for 3-D objects is important in automated manufacturing, quality control of components, 3-D solid modeling, etc. Optical measurement of omnidirectional shape has been done by rotating an object and/or measuring it from different directions. We previously proposed a phase-shifting method using Fourier transform (PSM/FT) and a multi-reference-planes method (MRPM) to obtain geometric parameters without influence of lens distortions. Both a measured object and a reference object are simultaneously measured from different directions. All partial point-clouds can be merged into one global coordinate system by a transform matrix calculated from the reference column on a rotary stage. 360-deg 3-D shape can be measured using the above method. In the PSM/FT, since the initial phase information is determined from only the first frequency of the Fourier spectrum of the phase-shifted intensity values at each point of an object and the frequency components higher than the first frequency almost depend on noise, almost experimental noise can eliminated. The phase reliability evaluation value using Fourier transform (PREV/FT) is, therefore, defined as the ratio of the first frequency component of the Fourier spectrum to the average of the frequency components higher then the first frequency of the Fourier spectrum. The PREV/FT is useful to merge data when measurement conditions are changed. In this paper, we propose a method that all partial data can be merged into global coordinates using the PREV/FT on overlapped areas and omnidirectional shape measurement is achieved.
机译:对于3-D对象的非接触形状测量对于自动制造,组件的质量控制,3-D实体建模等。通过旋转物体和/或从不同方向测量它来完成全向形状的光学测量。我们之前提出了一种使用傅里叶变换(PSM / FT)和多参考 - 平面方法(MRPM)的移相方法,以获得几何参数而不会影响镜片失真。从不同的方向同时测量测量对象和参考对象。所有部分点云都可以通过从旋转级的参考列计算的变换矩阵合并到一个全局坐标系。可以使用上述方法测量360°3-D形。在PSM / FT中,由于对象的每个点处仅从相移强度值的傅立叶谱的第一频率确定初始相位信息,并且频率分量高于第一频率几乎取决于噪声,但几乎实验噪音可以消除。因此,使用傅里叶变换(prev / ft)的相位可靠性评估值被定义为傅里叶频谱的第一频率分量与频率分量的平均值的比率较高于傅立叶频谱的第一频率。在更改测量条件时,PREV / FT可用于合并数据。在本文中,我们提出了一种方法,即通过在重叠区域上的前缀/ FT可以将所有部分数据合并到全局坐标中,并且实现了全向形状测量。

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