期刊文献+

基于Kinect的虚拟展馆游览系统的设计与实现 被引量:10

Design and Implementation of Virtual Pavilion Tour System Based on Kinect Technology
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摘要 针对现有三维虚拟展览馆游览系统交互方式用户体验不理想的现状,提出一种基于Kinect的虚拟展馆游览系统。该系统重点研究了利用Kinect骨骼追踪技术实现对体验者身体动作的解析和利用四元数插值对骨骼动画的控制。在功能上,实现了站在Kinect前的体验者通过不同的姿势,对虚拟展馆三维场景中虚拟人物的动作、姿态、位置、朝向的控制。实验结果表明,体验者能够通过体感交互技术较好地实现对虚拟人物姿态的控制并方便地进行虚拟场景游览。 According to the fact that the user experience of human-computer interaction of the present 3D virtual pavilion tour system confronts an unsatisfying situation,a new system based on Kinect technology of somatosensory interaction is proposed.The system focuses on two points: one is parsing the experiences' motions by using the Kinect technology of skeletal tracking; the other one is controlling the skeletal animation via the application of quaternion interpolation method.In terms of functionality,the system makes it a fact that the player standing in front of the Kinect can control the virtual characters' actions,postures,positions and directions in 3D scene with different body postures.Experimental results indicate that by the use of the technology of somatosensory interaction,the player can control virtual characters' postures in a better way and conduct virtual scene walkthrough in a more convenient manner.
出处 《计算机技术与发展》 2014年第6期174-178,183,共6页 Computer Technology and Development
基金 中央高校青年教师科研专项基金(201213019)
关键词 体感交互 骨骼追踪 骨骼动画 虚拟游览 somatosensory interaction skeletal tracking skeletal animation virtual tour
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参考文献12

  • 1谭剑波,张光刘,李琳.体感设备与被动立体相结合的人机交互方法研究[J].合肥工业大学学报(自然科学版),2011,34(2):251-254. 被引量:8
  • 2Rl,ppel U,Schatz K. Designing a BIM-based serious ame for fire safety evacuation simulations [ J ]. Advanced Engineering lnformatics,2011,25 ( 4 ) :600-611.
  • 3Smisek J,Jancosek M,Pajdla T. 3D with Kinect[ C ]//Proc of 2011 IEEE international conference on computer vision work- shops. Barcelona, Spain : 1EEE, 2011 : 1 154-1160.
  • 4林填锋,杨洁霞.基于Kinect的人体识别技术的一些改进[J].电脑知识与技术,2012,8(21):5220-5223.
  • 5Merrick D, Dwyer T. Skeletal animation for the exploration of graphs [ C ]//Proc of APVis. Darlinghurst, Australia, Austral- ia : Australian Computer Society, Inc. ,2004:61-70.
  • 6Naone E. Microsoft Kinect:how the device can respond to yourvoice and gestures[J]. Pioneering with Science and Technolo- gy,2011,4(4) :82-83.
  • 7朱涛,金国栋,芦利斌.Kinect应用概述及发展前景[J].现代计算机,2013,19(4):8-11. 被引量:21
  • 8余涛,叶金永,邵菲杰,郭晨媛,蔡耀.Kinect核心技术之骨架追踪技术[J].数字技术与应用,2012,30(10):115-115. 被引量:13
  • 9Merry B, Marais P, Gain E. Animation space:a truly linearframework for character animation [ J ]. ACM Transactions on Graphics, 2006,25 (4) : 1400-1423.
  • 10Pipho E. Focus on 3D models [ M ]. [ s. 1. ] : Premier Press, 2003.

二级参考文献41

  • 1柳克俊.关于人机交互、人机和谐环境的思考[J].计算机应用,2005,25(10):2226-2227. 被引量:11
  • 2NEHE OpenGL教程[EB/OL].[2010-03].http://nehe.gamedev.net/.
  • 3Julesz B.Stereoscopic vision[J].Vision Research,1986,26(9):1601-1612.
  • 4Bisbop P O,Pettigrew J D.Neural mechanisms of binocular vision[J].Vision Research,1986,26(9):1587-1600.
  • 5Foley J M.Binocular distance perception[J].Psychological Review,1980,87(5):411-434.
  • 6Ware C,Franck G.Evaluating stereo and motion cues for visualizing information nets in three dimensions[J].ACM Transactions on Graphics,1996,15(2):121-140.
  • 7Okoshi T.Three dimensional imaging techniques[M].New York:Academic Press,1976:103-303.
  • 8Shreiner D,Woon M.OpenGL编程指南[M].第6版.北京:机械工业出版社,2006:228-273.
  • 9Erica Naone. Microsoft Kinect: How the Device Can Respond to Your Voice and Gestures[Z]. Pioneering with Science and Technology, 2011; 4(04):82-83.
  • 10狄海进.基于三维视觉的手势跟踪及人机交互中的应用[D].南京大学,2011.

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