期刊文献+

逆向工程中基于共轴立体视觉的曲面边界测量(英文) 被引量:2

Digitization of Surface Boundary Based on Coaxial Stereo Vision Photogrammetry in Reverse Engineering
下载PDF
导出
摘要 针对逆向工程中引导性曲面边界信息的快速获取问题,系统地研究了共轴立体视觉测量方法,建立该方法的数学模型,详细分析了摄像机焦距、基线距等系统结构参数及被测点空间位置对测量精度的影响,通过数学分析确定摄像机基线距的最佳取值范围,研究共轴立体视觉测量系统特殊的极线几何关系.提出基于共轴立体视觉的曲面边界快速测量方法,利用三坐标测量机的精密机械系统及精确的空间定位能力,用单个摄像机以两次共轴定位摄取图像的方式实现共轴立体视觉测量功能,然后利用共轴立体视觉外极线相互平行且通过各自像平面主点的特殊极线几何关系简化同源像点匹配过程,从而快速获取被测曲面的边界信息.实验结果表明:用基于三坐标测量机的单摄像机共轴立体视觉测量方法获取的曲面边界平均误差为0.268mm,基本满足逆向工程中对引导性曲面边界的测量精度要求. Low-level precision boundary information of the unknown surface is useful for digital sensor path planning, data segmentation and feature recognition in reverse engineering. In order to acquire the low-level boundary information of the measured surface both rapidly and easily, the Coaxial Stereo Vision Photogrammetry (CSVP) was systematically studied. The mathematical model of CSVP was established, the influences of system parameters including the focal length of the cameras, the baseline distance and the spatial position of the measured points on measuring accuracy were analyzed, and the mathematical analysis for determining the optimum range of the baseline distance of the two cameras was carried out. In addition, the characteristics of the CSVP epipolar geometry were studied. Then a new approach for rapid digitization of surface boundaries based on CSVP was proposed. This approach was characterized by an integrated use of a Coordinate Measuring Machine (CMM) and a single CCD camera, the CMM was employed to provide an accurate and repeatable platform for the camera. Consequently, the camera can be located at any predefined position within the CMM's working volume. This enables the camera to get stereo image pairs in different positions along the same axis, which can only be achieved by two cameras without the CMM. During data processing, the characteristics of the CSVP epipolar geometry, in which the corresponding epipolar lines in the front and back image planes are arranged parallel to each other,and the epipolar lines pass through the main points of their own image planes respectively, were applied to facilitate stereo matching, by which the surface boundary information of the measured surface can be obtained both rapidly and easily compare to conventional binocular stereo vision method. Experimental results indicate that the average error of the surface boundaries reconstructed by the data gathered by the proposed method is 0. 268 mm. It can meet the accuracy requirements of low-level boundary information in reverse engineering.
作者 卢科青 王文 张敏 赵春峰 LU Ke-qing WANG Wen ZHANG Min ZHAO Chun-feng(Institute of Mechatronic Engineering, College of Mechanical Engineering, Hangzhou Dianzi University, Hangzhou 310018, China)
出处 《光子学报》 EI CAS CSCD 北大核心 2017年第2期164-180,共17页 Acta Photonica Sinica
基金 The National Natural Science Foundation of China(Nos.51105332,51275465) the Science and Technology Plan of Zhejiang Province(No.2014C31096) the Key Program of Zhejiang Provincial Natural Science Foundation of China(No.LZ16E050001)
关键词 立体视觉 逆向工程 边界提取 图像处理 图像匹配 Stereo vision Reverse engineering Boundary extraction Image processing Stereo matching
  • 相关文献

参考文献11

二级参考文献68

  • 1吴剑波,李明鸣,赵宏,谭玉山.立体视觉三维测量系统中的数据获取技术[J].仪器仪表学报,2001,22(z1):216-217. 被引量:5
  • 2潘懋元.教育外部关系规律辨析[J].厦门大学学报(哲学社会科学版),1990,40(2):1-7. 被引量:84
  • 3潘兵,谢惠民,戴福隆.数字图像相关中亚像素位移测量算法的研究[J].力学学报,2007,39(2):245-252. 被引量:88
  • 4刘雪梅,张树生,洪歧,黄绍林.逆向工程中基于模糊聚类的点云数据分区[J].机械科学与技术,2007,26(4):515-517. 被引量:4
  • 5HONG S H, JAVIDI B. Improved resolution 3D object reconstruction using computational integral imageing with time multiplexing[J].Opt Express, 2004,12(19) : 4579-4581.
  • 6SONG Y W,JAVIDI B. 3D object scaling in integral imaging display by varying the spatial ray sampling rate [J]. Opt Express ,2005,13(9) : 3242-3251.
  • 7SHIN D H,LEE B,KIM E S. Improved viewing quality of 3-D images in computational integral imaging reconstruction based on lenslet array model[J]. ETRI J, 2006,28(4) :521-524.
  • 8PARK J H, KIM Y, KIM J, et al. Three-dimensional display scheme based on integral imaging with three dimensional information processing[J]. Opt Express, 2004,12 (24) : 6020 -6032.
  • 9ARIMOTO H, JAVIDI B. Integral three-dimensional imaging with digital reconstruction [J].Opt Lett, 2001,26 (3) : 157- 159.
  • 10ERDMANN L,GABR1EL K J. High-resolution digital integral photography by use of a scanning microlens array[J]. Appl Opt, 2001,40(31) :5592- 5599.

共引文献107

同被引文献5

引证文献2

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部