An Optimal SVC Bitstream Schema for Viewport-Dependent 360-Degree Video Streaming

Gang Shen, Mingyang Ma, Guangxin Xu
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Abstract

To deliver ultra-high resolution 360-degree video (such as 8K, 12K, or even higher) across the internet, viewport-dependent streaming becomes necessary to save bandwidth. During viewport switches, clients and servers will instantly exchange coordination info and contents for the given viewports. However, those viewport switches pose a serious challenge for video encoding because the temporal dependency between contents within changing viewports is unpredictable. In existing practices, it is commonly noted that GOP (Group of Pictures) size in a bitstream intrinsically prohibits the reduction of the viewport switch latency, such as Motion-to-photon (MTP) latency, or motion-to-high-quality (MTHQ) latency. In this paper, we presented a Scalable Video Coding (SVC) based bitstream schema, which can structurally remove the impacts of GOP in viewport-dependent streaming and provide instant viewport switches within one-frame time (the best possible). In addition, combined with tiling, this new coding schema allows an efficient packing of the non-adjacent regions within a viewport of 360-degree video. Our experiments also show that the overall encoding with this SVC-based approach is faster than with multi-stream approaches. Compared with current 360-degree video streaming solutions based on MPEG-I OMAF, our approach is superior in terms of viewport switch latency, simplicity of viewport packing, and encoding performance.
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基于视口的360度视频流的最优SVC位流模式
为了在互联网上传输超高分辨率360度视频(如8K, 12K,甚至更高),依赖于视口的流媒体成为节省带宽的必要条件。在视口切换期间,客户端和服务器将立即交换给定视口的协调信息和内容。然而,这些视口切换对视频编码构成了严峻的挑战,因为在不断变化的视口中,内容之间的时间依赖性是不可预测的。在现有的实践中,通常注意到比特流中的GOP(图片组)大小本质上禁止减少视口切换延迟,例如运动到光子(MTP)延迟,或运动到高质量(MTHQ)延迟。在本文中,我们提出了一种基于可扩展视频编码(SVC)的比特流模式,该模式可以从结构上消除视口依赖流中GOP的影响,并在一帧时间内提供即时视口切换(最好的)。此外,结合平铺,这种新的编码模式允许在360度视频的视口内有效地打包非相邻区域。我们的实验还表明,这种基于svc的方法的整体编码速度比多流方法快。与目前基于MPEG-I OMAF的360度视频流解决方案相比,我们的方法在视口切换延迟、视口打包简单性和编码性能方面都具有优势。
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