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360-degree video stitching for dual-fisheye lens cameras based on rigid moving least squares

机译:基于刚性最小二乘法的双鱼眼镜头相机360度视频拼接

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Dual-fisheye lens cameras are becoming popular for 360-degree video capture, especially for User-generated content (UGC), since they are affordable and portable. Images generated by the dual-fisheye cameras have limited overlap and hence require non-conventional stitching techniques to produce high-quality 360×180-degree panoramas. This paper introduces a novel method to align these images using interpolation grids based on rigid moving least squares. Furthermore, jitter is the critical issue arising when one applies the image-based stitching algorithms to video. It stems from the unconstrained movement of stitching boundary from one frame to another. Therefore, we also propose a new algorithm to maintain the temporal coherence of stitching boundary to provide jitter-free 360-degree videos. Results show that the method proposed in this paper can produce higher quality stitched images and videos than prior work.
机译:双鱼眼镜头相机价格低廉且便于携带,因此在360度视频捕获(尤其是用户生成的内容(UGC))中正变得越来越流行。由双鱼眼镜头相机生成的图像具有有限的重叠,因此需要非常规的拼接技术才能生成高质量的360×180度全景图。本文介绍了一种使用基于刚性移动最小二乘法的插值网格对齐这些图像的新方法。此外,抖动是将基于图像的拼接算法应用于视频时出现的关键问题。它源于缝合边界从一帧到另一帧的不受限制的运动。因此,我们还提出了一种新的算法来维持拼接边界的时间相干性,以提供无抖动的360度视频。结果表明,与现有技术相比,本文提出的方法可以产生更高质量的拼接图像和视频。

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