variertm自动立体虚拟现实显示器

D. Sandin, Todd Margolis, Jinghua Ge, Javier Girado, T. Peterka, T. DeFanti
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引用次数: 96

摘要

长期以来,虚拟现实(VR)一直受到实现这种体验所需设备的阻碍;特别是立体眼镜和跟踪设备。自动立体显示设备因将用户从立体眼镜中解放出来而越来越受欢迎,但很少有设备符合VR显示器的标准。伊利诺伊大学芝加哥分校(UIC)的电子可视化实验室(EVL)设计并生产了一种大规模、高分辨率头显式障碍条自动立体显示系统,该系统可以在不需要用户佩戴任何累加物的情况下产生VR沉浸式体验。由此产生的系统被称为Varrier,是一个被动视差屏障35面板平铺显示器,可产生宽视野,头显跟踪VR体验。本文介绍了与视差屏障自动立体相关的背景资料,提供了系统配置和结构细节,研究了用于产生立体图像的可变交错算法,介绍了校准和测试,并讨论了基于相机的跟踪子系统。
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The VarrierTM autostereoscopic virtual reality display
Virtual reality (VR) has long been hampered by the gear needed to make the experience possible; specifically, stereo glasses and tracking devices. Autostereoscopic display devices are gaining popularity by freeing the user from stereo glasses, however few qualify as VR displays. The Electronic Visualization Laboratory (EVL) at the University of Illinois at Chicago (UIC) has designed and produced a large scale, high resolution head-tracked barrier-strip autostereoscopic display system that produces a VR immersive experience without requiring the user to wear any encumbrances. The resulting system, called Varrier, is a passive parallax barrier 35-panel tiled display that produces a wide field of view, head-tracked VR experience. This paper presents background material related to parallax barrier autostereoscopy, provides system configuration and construction details, examines Varrier interleaving algorithms used to produce the stereo images, introduces calibration and testing, and discusses the camera-based tracking subsystem.
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Session details: I3D (symposium on interactive 3D graphics) Session details: Mesh manipulation Session details: Texture synthesis Session details: Precomputed light transport Session details: Hardware rendering
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