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Virtual reality for small colleges

Published: 01 April 2004 Publication History

Abstract

The popularity of Virtual Reality (VR) display systems has increased dramatically in recent years. VR applications are characterized by a virtual world into which users are immersed, providing interactivity and sensory feedback [1]. These superior sensory environments make virtual reality a popular medium for many types of applications, ranging from exploration of severe thunderstorm and tornado data [2], to architecture from ancient times [5]. Proponents of virtual reality feel that the VR experience enhances learning, since participants utilize more of their senses than with typical computer applications. VR systems generally provide displays to users in stereo projection that give a sense of 3D viewing. Traditionally, the cost of implementing virtual reality environment has been very high, limiting VR to only those institutions with large research budgets. However, with recent advances in commodity hardware capabilities and the reduction in cost of typical LCD projectors, a low cost VR system can now be constructed at any institution, even those with significant budget restrictions. This paper discusses our experiences with the construction of a stereo projection display environment at Hanover College, and some projects my students and I have done with this system. Several potential research projects in virtual reality, which could be done with little funding, are also proposed.

References

[1]
Sherman, W., Craig, A., Understanding Virtual Reality, Interface, Application, and Design. San Francisco, California: Morgan Kaufman, 2003.
[2]
Jaswal, V., CAVEvis: Distributed Real-Time Visualization of Time-Varying Scalar and Vector Fields Using the CAVE Virtual Reality Theatre. In Proceedings of the IEEE Conference on Visualization, pages 301--308, 1997.
[3]
Macedonia, M., Games Soldiers Play, IEEE Spectrum, March, 2002.
[4]
Johnson, A., Moher, T., Cho, Y., Lin, Y., Haas, D., Kim, J., Augmenting Elementary School Education with VR, IEEE Computer Graphics and Applications, Vol. 22, No. 2, 2002.
[5]
Cruz-Neira, C., Computational Humanities: The New Challenge for VR. IEEE Computer Graphics and Applications, May/June, 2003.
[6]
Neubauer, B., Harris, J., Immersive Visual Modeling: Potential use of Virtual Reality in Teaching Software Design. The Journal of Computing Sciences in Colleges, Vol. 18, No. 6, 2003.
[7]
Porter, S., Video Goes Stereo. Computer Graphics World, August, 2003.
[8]
Dumas, J., Novobilski, A., Ellis, D., Paschal, M., VR on a Budget: Developing A Flight Simulator in a Small Institution with Off-The-Shelf Hardware and Open Source Software. The Journal of Computing Sciences in Colleges, Vol. 18, No. 2, 2003.
[9]
Cruz-Neira, C., Sandin, D., DeFanti, T., Kenyon, R., Hart, J., The CAVE: Audio Visual Experience Automatic Virtual Environment. Communications of the ACM, vol. 35, no. 6, 1992.
[10]
Rheingold, H., Virtual Reality. New York, New York: Summit Books, 1991.
[11]
Pape, D., Anstey, J., Dawe, G., A Low-Cost Projection Based Virtual Reality Display. The Engineering Reality of Virtual Reality 2002 SPIE Electronic Imaging: Science and Technology. San Jose, CA, 2002.
[12]
Pair, J., Jensen, C., Flores, J., Wilson, J., Hodges, L., Gotz, D., The NAVE: Design and Implementation of a Non-Expensive Immersive Virtual Environment. SIGGRAPH 2002 Sketches and Applications, 2000.
[13]
Belleman, R., Stolk, B., de Vries, R., Immersive Virtual Reality on Commodity Hardware. ASCI 2001.
[14]
The GeoWall Consortium, http://geowall.geo.lsa.umich.edu/.
[15]
Bennett, D., Farrell, P., Lee, M., Ruttan, A., A Low Cost Commodity Based System for Group Viewing of 3D Images. Proceedings of Visualization Development Environments, 2000.
[16]
OpenGL Architectural Review Board, OpenGL Programming Guide. Reading, Massachusetts: Addison Wesley, 1993.
[17]
Bourke, P., Calculating Stereo Pairs, http://astronomy.swin.edu.au/~pbourke/stereographics/stereorender/, 1999.
[18]
Cliburn, D., GLUMM: An Application Programming Interface for Multi-Screen Programming in a Windows Environment. The Journal of Computing Sciences in Colleges, Vol. 18, No. 4, 2003.
[19]
nVIDIA GeForce4 MX, http://www.nvidia.com/view.asp?PAGE=geforce4mx.
[20]
"C-Wall", http://www.evl.uic.edu/research/res_project.php3?indi=234.

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cover image Journal of Computing Sciences in Colleges
Journal of Computing Sciences in Colleges  Volume 19, Issue 4
April 2004
352 pages
ISSN:1937-4771
EISSN:1937-4763
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Consortium for Computing Sciences in Colleges

Evansville, IN, United States

Publication History

Published: 01 April 2004
Published in JCSC Volume 19, Issue 4

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