High-quality Panorama Stitching based on Asymmetric Bidirectional Optical Flow

Ming Meng, Shaojun Liu
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引用次数: 5

Abstract

In this paper, we propose a panorama stitching algorithm based on asymmetric bidirectional optical flow. This algorithm expects multiple photos captured by fisheye lens cameras as input, and then, through the proposed algorithm, these photos can be merged into a high-quality 360-degree spherical panoramic image. For photos taken from a distant perspective, the parallax among them is relatively small, and the obtained panoramic image can be nearly seamless and undistorted. For photos taken from a close perspective or with a relatively large parallax, a seamless though partially distorted panoramic image can also be obtained. Besides, with the help of Graphics Processing Unit (GPU), this algorithm can complete the whole stitching process at a very fast speed: typically, it only takes less than 30s to obtain a panoramic image of 9000-by-4000 pixels, which means our panorama stitching algorithm is of high value in many real-time applications. Our code is available at https://github.com/MungoMeng/Panorama-OpticalFlow.
基于非对称双向光流的高质量全景拼接
本文提出了一种基于非对称双向光流的全景拼接算法。该算法期望鱼眼镜头相机拍摄的多张照片作为输入,然后通过本文提出的算法将这些照片合并成一幅高质量的360度球面全景图像。对于远距离拍摄的照片,它们之间的视差相对较小,获得的全景图像几乎是无缝的,不失真的。对于近距离视角或视差较大的照片,也可以获得虽然部分失真但无缝的全景图像。此外,在GPU的帮助下,该算法可以以非常快的速度完成整个拼接过程:通常只需要不到30秒的时间就可以获得9000 × 4000像素的全景图像,这意味着我们的全景拼接算法在许多实时应用中具有很高的价值。我们的代码可在https://github.com/MungoMeng/Panorama-OpticalFlow上获得。
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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