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使用镜锥的多视角全景相机。

Multiview panoramic cameras using mirror pyramids.

作者信息

Tan Kar-Han, Hua Hong, Ahuja Narendra

机构信息

Computer Vision and Robotics Laboratory, Beckham Institute for Advanced Science and Technology, University of Illinois, at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

IEEE Trans Pattern Anal Mach Intell. 2004 Jul;26(7):941-6. doi: 10.1109/TPAMI.2004.33.

Abstract

A mirror pyramid consists of a set of planar mirror faces arranged around an axis of symmetry and inclined to form a pyramid. By strategically positioning a number of conventional cameras around a mirror pyramid, the viewpoints of the cameras' mirror images can be located at a single point within the pyramid and their optical axes pointed in different directions to effectively form a virtual camera with a panoramic field of view. Mirror pyramid-based panoramic cameras have a number of attractive properties, including single-viewpoint imaging, high resolution, and video rate capture. It is also possible to place multiple viewpoints within a single mirror pyramid, yielding compact designs for simultaneous multiview panoramic video rate imaging. Nalwa [4] first described some of the basic ideas behind mirror pyramid cameras. In this paper, we analyze the general class of multiview panoramic cameras, provide a method for designing these cameras, and present experimental results using a prototype we have developed to validate single-pyramid multiview designs. We first give a description of mirror pyramid cameras, including the imaging geometry, and investigate the relationship between the placement of viewpoints within the pyramid and the cameras' field of view (FOV), using simulations to illustrate the concepts. A method for maximizing sensor utilization in a mirror pyramid-based multiview panoramic camera is also presented. Images acquired using the experimental prototype for two viewpoints are shown.

摘要

镜像金字塔由一组围绕对称轴排列并倾斜以形成金字塔的平面镜面组成。通过在镜像金字塔周围策略性地布置多个传统相机,相机镜像的视点可以位于金字塔内的单个点上,并且它们的光轴指向不同方向,从而有效地形成具有全景视野的虚拟相机。基于镜像金字塔的全景相机具有许多吸引人的特性,包括单视点成像、高分辨率和视频速率捕捉。也可以在单个镜像金字塔内放置多个视点,从而实现紧凑设计,用于同时进行多视图全景视频速率成像。纳勒瓦[4]首先描述了镜像金字塔相机背后的一些基本思想。在本文中,我们分析了多视图全景相机的一般类别,提供了一种设计这些相机的方法,并展示了使用我们开发的原型进行实验的结果,以验证单金字塔多视图设计。我们首先描述镜像金字塔相机,包括成像几何结构,并使用模拟来说明概念,研究金字塔内视点的放置与相机视野(FOV)之间的关系。还提出了一种在基于镜像金字塔的多视图全景相机中最大化传感器利用率的方法。展示了使用实验原型获取的两个视点的图像。

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