Content-Adaptive 360-Degree Video Coding Using Hybrid Cubemap Projection

Yuwen He, Xiaoyu Xiu, Philippe Hanhart, Yan Ye, Fanyi Duanmu, Yao Wang
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引用次数: 15

Abstract

In this paper, a novel hybrid cubemap projection (HCP) is proposed to improve the 360-degree video coding efficiency. HCP allows adaptive sampling adjustments in the horizontal and vertical directions within each cube face. HCP parameters of each cube face can be adjusted based on the input 360-degree video content characteristics for a better sampling efficiency. The HCP parameters can be updated periodically to adapt to temporal content variation. An efficient HCP parameter estimation algorithm is proposed to reduce the computational complexity of parameter estimation. Experimental results demonstrate that HCP format achieves on average luma (Y) BD-rate reduction of 11.51%, 8.0%, and 0.54% compared to equirectangular projection format, cubemap projection format, and adjusted cubemap projection format, respectively, in terms of end-to-end WS-PSNR.
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使用混合立方体映射投影的内容自适应360度视频编码
为了提高360度视频编码效率,提出了一种新的混合立方体映射投影(HCP)算法。HCP允许在每个立方体表面的水平和垂直方向上进行自适应采样调整。每个立方体面的HCP参数可以根据输入的360度视频内容特性进行调整,以获得更好的采样效率。HCP参数可以定期更新以适应时间变化。为了降低参数估计的计算复杂度,提出了一种高效的HCP参数估计算法。实验结果表明,在端到端WS-PSNR方面,HCP格式与等矩形投影格式、立方体映射投影格式和调整立方体映射投影格式相比,平均亮度(Y) bd率分别降低了11.51%、8.0%和0.54%。
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