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Double-shot inverse-phase color fringe projection profilometry using two-step phase shifting

机译:使用两步相移的双相反相彩色条纹投影轮廓图

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A double-shot inverse-phase color fringe projection profilometry is proposed to measure 3D shape information by using two-step phase shifting. Each of these two patterns encoded with two sinusoidal patterns and one uniform intensity pattern is projected by a digital projection and recorded by a color CCD camera. Firstly, the captured color fringe patterns are separated into its RGB components and two-step phase shifting is composed with red and blue components. Secondly, the dominant error sources are analyzed to reduce the variable errors and the red and blue components are filtered with a band-pass filter by using fast Fourier transform. Finally, 3D shape information is decoded by applying 1D Hilbert Transform and the phase errors are weakened with the sum of inverse-phase. Simulation and experimental results demonstrate that the proposed approach is able to effectively suppress phase errors.
机译:提出了一种双相反相彩色条纹投影轮廓测量法,该方法通过使用两步相移来测量3D形状信息。由两个正弦波模式和一个均匀强度模式编码的这两个模式中的每一个都由数字投影投影并由彩色CCD相机记录。首先,将捕获的彩色条纹图案分成其RGB分量,并且由红色和蓝色分量组成两步相移。其次,分析主要误差源以减少可变误差,并使用快速傅里叶变换通过带通滤波器对红色和蓝色分量进行滤波。最终,通过应用1D Hilbert变换对3D形状信息进行解码,并通过反相求和来减小相位误差。仿真和实验结果表明,该方法能够有效抑制相位误差。

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