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Real-Time Complex Object 3D Measurement

机译:实时复杂对象3D测量

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摘要

Real-Time complex object 3D measurement based on digital fringe projection has a huge potential for applications in many areas, including reverse engineering, inspection, entertainment and social security. We describe a real-time complex object 3D shape measurement technique based on viewpoint-coded structured light technique and phase-shifting technique. Previously, unambiguous reconstruction codes could only be encoded spatially or temporally. The viewpoint coding, in contrast, allows for depth reconstruction without making any spatial or temporal continuity assumptions about the scene. With k camera positions, the viewpoint-coded structured light method can distinguish between 2~k depths. For complex object 3D measurement, it is still limited. So, in this work, we combine the three-step phase-shifting method and the viewpoint-coded method to reconstruct 3D points of the complex object in realtime. By choosing three appropriate camera positions, three different frequencies fringe images can be captured. Thereby, a famous multifrequency heterodyne principle can be used for unwrapping the phase value obtained from the three-step phase-shifting method. A prototype system is developed to demonstrate this novel hybrid method. The experimental results show that this method can reconstruct the 3D shape of complex object in real-time.
机译:基于数字边缘投影的实时复杂对象3D测量对许多领域的应用具有巨大的潜力,包括逆向工程,检查,娱乐和社会保障。基于视点编码的结构光技术和相移技术,描述了一种基于视点编码的实时复杂对象3D形状测量技术。以前,明确的重建代码只能在空间或时间上编码。相比之下,编码的视点编码允许深度重建而不对场景进行任何空间或时间连续性假设。使用K摄像头位置,观点编码的结构化光法可以区分2〜K深度。对于复杂的对象3D测量,它仍然有限。因此,在这项工作中,我们组合了三步相位移位方法和视点编码方法,以实时重建复杂对象的3D点。通过选择三个适当的相机位置,可以捕获三个不同的频率条纹图像。因此,着名的多频外差原理可用于解包从三步相移方法获得的相值。开发了一种原型系统来证明这种新的混合方法。实验结果表明,该方法可以实时重建复杂物体的3D形状。

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