用于虚拟现实的可扩展多dlp微型投影仪系统

F. Teubl, C. Kurashima, M. Cabral, S. Fels, R. Lopes, M. Zuffo
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引用次数: 2

摘要

虚拟现实(VR)环境可以为用户提供沉浸式、交互性和逼真的图像。VR系统通常很昂贵,并且需要在复杂的设置中使用特殊设备。一种方法是使用商用现货(COTS)桌面多投影仪手动或基于相机校准,以降低VR系统的成本,而不会显著降低视觉体验。此外,对于非平面的屏幕形状,需要特殊的光学器件,如透镜和反射镜,从而增加了成本。我们提出了一种低成本,可扩展,灵活和移动的解决方案,允许构建复杂的VR系统,将图像投影到各种任意表面上,如平面,圆柱形和球面。该方法结合了三个关键方面:1)dlp - pico投影机集群在任意表面上提供均匀和连续的像素密度,而无需额外的光学器件;2)节能与光控的LED照明技术;3)更小的物理足迹,以实现灵活性。因此,所提出的系统在像素密度、能量和物理空间方面具有可扩展性。为了实现这些目标,我们开发了一个名为FastFusion的多投影仪软件库,它可以将所有投影仪校准为呈现给观众的统一图像。FastFusion使用相机自动校准投影图像的几何和光度校正,唯一的要求是它们之间有一些重叠的像素。我们展示了8个微型投影仪,7流明(LED)和DLP 0.17 HVGA芯片组的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A scalable multi-DLP pico-projector system for virtual reality
Virtual Reality (VR) environments can offer immersion, interaction and realistic images to users. A VR system is usually expensive and requires special equipment in a complex setup. One approach is to use Commodity-Off-The-Shelf (COTS) desktop multi-projectors manually or camera based calibrated to reduce the cost of VR systems without significant decrease of the visual experience. Additionally, for non-planar screen shapes, special optics such as lenses and mirrors are required thus increasing costs. We propose a low-cost, scalable, flexible and mobile solution that allows building complex VR systems that projects images onto a variety of arbitrary surfaces such as planar, cylindrical and spherical surfaces. This approach combines three key aspects: 1) clusters of DLP-picoprojectors to provide homogeneous and continuous pixel density upon arbitrary surfaces without additional optics; 2) LED lighting technology for energy efficiency and light control; 3) smaller physical footprint for flexibility purposes. Therefore, the proposed system is scalable in terms of pixel density, energy and physical space. To achieve these goals, we developed a multi-projector software library called FastFusion that calibrates all projectors in a uniform image that is presented to viewers. FastFusion uses a camera to automatically calibrate geometric and photometric correction of projected images from ad-hoc positioned projectors, the only requirement is some few pixels overlapping amongst them. We present results with eight Pico-projectors, with 7 lumens (LED) and DLP 0.17 HVGA Chipset.
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