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High-speed 3D imaging using digital binary defocusing method vs sinusoidal method

机译:使用数字二进制散焦方法与正弦方法的高速3D成像

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This paper presents our research findings on high-speed 3D imaging using digital light processing (DLP) technologies. In particular, we compare two different sinusoidal fringe generation techniques using the DLP projection devices: direct projection of 8-bit computer generated sinusoidal patterns (a.k.a, the sinusoidal method), and the creation of sinusoidal patterns by defocusing binary patterns (a.k.a., the binary defocusing method). This paper mainly examines their performance on high-accuracy measurement applications under precisely controlled settings. Two different projection systems were tested in this study: the commercially available inexpensive projector, and the DLP development kit. Experimental results demonstrated that the binary defocusing method always outperforms the sinusoidal method if a sufficient number of phase-shifted fringe patterns can be used.
机译:本文介绍了我们在使用数字光处理(DLP)技术进行高速3D成像方面的研究成果。特别是,我们比较了使用DLP投影设备的两种不同的正弦条纹生成技术:直接投影8位计算机生成的正弦模式(又名正弦方法),以及通过散焦二进制模式(又称二进制)创建正弦模式散焦方法)。本文主要考察在精确控制的设置下它们在高精度测量应用中的性能。在这项研究中,测试了两种不同的投影系统:市售的廉价投影仪和DLP开发套件。实验结果表明,如果可以使用足够数量的相移条纹图案,则二值散焦方法总是优于正弦方法。

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