Computation of Homography between a Spherical Image and a Perspective Image

Shigang Li, Xiaowei Wang, T. Kosaki
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引用次数: 1

Abstract

While a spherical image has a full field of view with a low resolution with respect to observed scenes, a perspective image has a narrow field of view with a high resolution with respect to observed scenes. Therefore, a spherical image and a perspective image are complementary to each other for the field of view and resolution; a visual system consisting of a spherical image and a perspective image can not only observe the entire surrounding environment, but also focus on a specific object with high resolution. In this paper we investigate the computation of the homography between a spherical image and a perspective image. First, the conventional homography of perspective images is reformulated to the case associating a spherical image to a perspective image. Next, we explain how to carry out feature matching between a full-view image and a perspective image for the computation of the homography. Finally, the experimental results of two applications are given to show the effectiveness of our proposed method.
球面图像与透视图像之间的单应性计算
球面图像具有完整的视场,相对于观察到的场景分辨率较低,而透视图像具有狭窄的视场,相对于观察到的场景分辨率较高。因此,球面图像和透视图像在视场和分辨率上是互补的;由球面图像和透视图像组成的视觉系统不仅可以观察整个周围环境,还可以以高分辨率聚焦于特定物体。本文研究了球面像与透视像之间的单应性的计算。首先,将透视图像的传统单应性重新表述为将球面图像与透视图像相关联的情况。接下来,我们解释了如何在全视图图像和透视图像之间进行特征匹配以计算单应性。最后给出了两个应用的实验结果,验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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