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Fourier-Transform-Based Surface Measurement and Reconstruction of Human Face Using the Projection of Monochromatic Structured Light

机译:使用单色结构光投影基于傅里叶变换的表面测量和人体脸部重建

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摘要

This work presents a new approach of surface measurement of human face via the combination of the projection of monochromatic structured light, the optical filtering technique, the polarization technique and the Fourier-transform-based image-processing algorithm. The theoretical analyses and experimental results carried out in this study showed that the monochromatic feature of projected fringe pattern generated using our designed laser-beam-based optical system ensures the use of optical filtering technique for removing the effect of background illumination; the linearly-polarized characteristic makes it possible to employ a polarizer for eliminating the noised signal contributed by multiply-scattered photons; and the high-contrast sinusoidal fringes of the projected structured light provide the condition for accurate reconstruction using one-shot measurement based on Fourier transform profilometry. The proposed method with the portable and stable optical setup may have potential applications of indoor medical scan of human face and outdoor facial recognition without strict requirements of a dark environment and a stable object being observed.
机译:这项工作提出人脸的表面测量的经由单色结构化的光的投射的组合的新的方法,该光学过滤技术,偏振技术和变换基于傅立叶的图像处理算法。理论分析和实验结果在本研究表明,使用我们的设计激光束为基础的光学系统中产生投影的条纹图案的单色特征确保用于去除背景照明的效果使用光学滤波技术进行;该线性极化的特性,能够使用偏振器用于消除贡献的乘法 - 散射的光子的降噪信号;和投影的结构化光的高对比度干涉条纹的正弦用于使用基于傅里叶单次测量变换轮廓准确的重建提供了条件。所提出的方法与便携式和稳定的光学设置可以具有不黑暗环境和被观察到稳定对象的严格要求人脸与室外面部识别的室内医学扫描的潜在的应用。

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