首页> 外文会议>Interferometry XIII: Techniques and Analysis >High-Resolution, Real-Time 3-D Absolute Coordinates Measurement Using a Fast Three-Step Phase-Shifting Algorithm
【24h】

High-Resolution, Real-Time 3-D Absolute Coordinates Measurement Using a Fast Three-Step Phase-Shifting Algorithm

机译:使用快速三步相移算法的高分辨率实时3D绝对坐标测量

获取原文
获取原文并翻译 | 示例

摘要

High-resolution, real-time 3-D absolute coordinate measurement is highly important in many fields. This paper presents such a system that measures 3-D absolute geometric shapes and positions at 30 frames per second (fps), with an image resolution of 532 x 500. The system is based on a digital fringe projection and fast three-step phase-shifting method. It utilizes a digital-light-processing (DLP) projector to project color encoded computer generated phase-shifted fringe patterns in grayscale, a high-speed CCD camera synchronized with the projector to capture fringe images at 90 fps. Based on the three-step phase-shifting algorithm, any successive three fringe images can be used to reconstruct one 3-D shape. Therefore, the 3-D shape measurement speed is 30 fps. To obtain absolute coordinates, absolute phase is required. In this research, a tiny marker is encoded in the projected fringe pattern, and detected by software from captured fringe images accurately. Absolute coordinates can be obtained when the marker position is located and the measurement system is calibrated. To demonstrate the performance of the system, we measured human faces. The details of facial geometries and dynamic changes of facial expressions are measured clearly. We also measured a hand moving over a depth distance of approximately 700mm, again both hand shapes and positions changes are clearly captured. By using the fast three-step phase-shifting algorithm and a parallel processing technique, we successfully developed a system that acquires, reconstructs, and displays 3-D shape in real-time. Applications of such a system include manufacturing, inspection, reverse engineering, computer vision and computer graphics.
机译:在许多领域中,高分辨率,实时3D绝对坐标测量非常重要。本文提出了这样一种系统,该系统以每秒30帧(fps)的速度测量3-D绝对几何形状和位置,图像分辨率为532 x500。该系统基于数字条纹投影和快速的三步相位测量,移位方法。它利用数字光处理(DLP)投影仪来投影彩色编码的计算机生成的灰度相移条纹图案,并与投影仪同步的高速CCD相机以90 fps的速度捕捉条纹图像。基于三步相移算法,任何连续的三个条纹图像都可以用于重建一个3-D形状。因此,3-D形状测量速度为30 fps。为了获得绝对坐标,需要绝对相位。在这项研究中,一个微小的标记被编码在投射的条纹图案中,并由软件从捕获的条纹图像中准确检测出来。当定位标记位置并校准测量系统时,可以获得绝对坐标。为了演示该系统的性能,我们测量了人脸。可以清楚地测量面部几何形状的细节和面部表情的动态变化。我们还测量了一只手在约700mm的深度距离内移动,再次清楚地捕获了手的形状和位置变化。通过使用快速的三步相移算法和并行处理技术,我们成功开发了一种实时采集,重建和显示3-D形状的系统。这种系统的应用包括制造,检查,逆向工程,计算机视觉和计算机图形。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号