使用投影仪散焦的高速、高分辨率三维形状测量的一些最新进展

Song Zhang, Yuanzheng Gong, Yajun Wang, J. Laughner, I. Efimov
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引用次数: 3

摘要

高速、高分辨率3-D形状测量变得越来越重要,具有广泛的应用,包括医学、国土安全和娱乐。近年来,我们取得了一些进展,开发了一种前所未有的60 Hz频率的数字条纹投影和相移法三维形状测量系统。然而,为了进一步提高其速度,遇到了硬件瓶颈。自2009年以来,我们一直在研究一种可能消除这一速度瓶颈的新方法。这种技术本质上是通过适当地散焦二进制条纹来产生正弦条纹图案。它与数字光处理(DLP)技术的运行机制一致,从而允许一些速度突破。本文综述了近年来我国在该技术方面的一些研究成果。特别是,我们将包括三个主要部分:(1)在不显着增加硬件成本的情况下,将实时三维形状测量系统的速度提高一倍;(2)使用相对便宜且现成的DLP投影仪实现数十khz速率的三维形状测量;(3)利用DLP Discovery平台实现kHz速率相移,实现超高速、高质量的三维形状测量。我们将解释该技术的原理,展示一些实验结果,并讨论该技术的优点和缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Some recent advance on high-speed, high-resolution 3-D shape measurement using projector defocusing
High-speed, high-resolution 3-D shape measurement becomes increasingly important, with broad applications including medicine, homeland security, and entertainment. In recent years, we have made some progress, and developed an unprecedented 60 Hz rate 3-D shape measurement system with a digital fringe projection and phase-shifting method. However, a hardware bottleneck was met to further improve its speed. Since 2009, we have been studying a new method that could potentially eliminate this speed bottleneck. This technique is essentially to generate sinusoidal fringe patterns by properly defocusing binary ones. It coincides with the operation mechanism of the digital-light-processing (DLP) technology, and thus permits some speed breakthroughs. This paper summarizes some of our recent studies with this technology. In particular, we will include three major pieces: (1) double the speed of our real-time 3-D shape measurement system without significantly increase the hardware cost; (2) reach tens-of-kHz rate 3-D shape measurement by using a relatively inexpensive and off-the-shelf DLP projector; and (3) achieve kHz rate phase shifting for superior high-speed, high-quality 3-D shape measurement with the DLP Discovery platform. We will explain the principles of the technology, show some experimental results, and discuss the advantages and shortcomings of this technology.
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