期刊文献+

基于单台Kinect的高精度个性化人体建模方法 被引量:3

Personalized Human Body Modeling with High Precision Based on Single Kinect
下载PDF
导出
摘要 提出一种基于单台Kinect的高精度三维人体建模方法。首先使用一台Kinect对人体头部进行扫描,以获取高精度的头部点云数据;其次,在保持头部精确度的基础上对所获取的点云数据进行采样预处理;最后利用层次化的紧支撑径向基函数(CS-RBFs)将采样后的点云与已有的人体躯干进行拟合获得3D人体模型。仿真结果表明,该方法能够提高人体模型的精确度并提高建模速度。 A personalized human body modeling method with high precision based on single Kinect is proposed.Firstly,the high-precision point cloud of a human head using single Kinect is obtained.Then,the point cloud is preprocessed based on maintaining the accuracy of the head.Finally,by employing the hierarchical compactly supported radial basis function(CS-RBFs),the sampled point cloud is fitted with the existing human body to get 3Dhuman body model.Simulation results show that the proposed method can enhance accuracy and speed of human body modeling.
出处 《数据采集与处理》 CSCD 北大核心 2015年第5期1085-1090,共6页 Journal of Data Acquisition and Processing
基金 国家自然科学基金(61202225 61272094 61373149 61303157)资助项目 高等学校博士学科点专项科研基金(20133704120009)资助项目 山东省高等学校科技计划项目(J13LN13)资助项目
关键词 人体建模 KINECT 紧支撑径向基函数 隐式曲面 human body modeling Kinect compactly supported radial basis functions implicit surface
  • 相关文献

参考文献12

  • 1Tong J, Zhou J, Liu L, et al. Scanning 3D full human bodies using Kinects[J]. Visualization and Computer Graphics, IEEE Transactions on, 2012, 18(4) : 643 650.
  • 2Comaniciu D, Ramesh V, Meer P. Real-time tracking of non-rigid objects using mean shift[C]//Computer Vision and Pat- tern Recognition Proceedings. Hilton Head Island, SC:IEEE,2000:142-149.
  • 3Khoshelham K, Elberink S O. Accuracy and resolution of Kineet depth data for indoor mapping applications[J]. Sensors, 2012, 12(2): 1437-1454.
  • 4Oikonomidis I, Kyriazis N, Argyros A A. Efficient model-based 3D tracking of hand articulations usingKinect[C] // Pro- ceedings of the 22nd British Machine Vision Conference. Dundee, UK:BMVC, 2011: 1-11.
  • 5Ning P, Bloomenthal J. An evaluation of implicit surface tilers[J]. Computer Graphics and Applications, IEEE, 1993, 13 (6) : 33-41.
  • 6Floater M S, Iske A. Multistep scattered data interpolation using compactly supported radial basis functions[J]. Journal of Computational and Applied Mathematics, 1996, 73(1): 65-78.
  • 7Buhmann M D. Radial basis functions[J]. Aeta Numerica, 2000, 9: 1-38.
  • 8Cart J C, Beatson R K, Cherrie J B, et al. Reconstruction and representation of 3D objects with radial basis functions[C]// Proceedings of the 28th Annual Conference on Computer Graphics and Interactive Techniques. New York, USA: ACM, 2001: 67-76.
  • 9Ohtake Y, Belyaev A, Seidel H P. A multi-scale approach to 3D scattered data interpolation with compactly supported basis functions[C] // Shape Modeling International. Seoul, South Korea : IEEE, 2003 : 153-161.
  • 10Ohtake Y, Belyaev A, Seidel H P. Ridge-valley lines on meshes via implicit surface fitting[J]. ACM Transactions on Graph- ics, 2004, 23(3)~ 609-612.

二级参考文献9

共引文献7

同被引文献25

引证文献3

二级引证文献17

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