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A mathematical theory of compressed video buffering: Traffic regulation for end-to-end video network QoS

机译:压缩视频缓冲的数学理论:端到端视频网络QoS的流量调节

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The recent successes of over-the-top (OTT) video services have intensified the competition between the traditional broadcasting video and OTT video. Such competition has pushed the traditional video service providers to accelerate the transition of their video services from the broadcasting video to the carrier-grade IP video streaming. However, there are significant challenges in providing large-scale carrier-grade IP video streaming services. For a compressed video sequence, central to the guaranteed real-time delivery are the issues of video rate, buffering, and timing as compressed video pictures are transmitted over an IP network from the encoder output to the decoder input. Toward the understanding and eventual resolution of these issues, a mathematical theory of compressed video buffering is developed to address IP video traffic regulation for the end-to-end video network quality of service. In particular, a comprehensive set of theoretical relationships is established for decoder buffer size, network transmission rate, network delay and jitter, and video source characteristics. As an example, the theory is applied to measure and compare the burstiness and delay of video streams coded with MPEG-2, advanced video coding, and high-efficiency video coding standards. The applicability of the theory to IP networks that consist of a specific class of routers is also demonstrated.
机译:OTT(Over-the-top)视频服务的最新成功加剧了传统广播视频和OTT视频之间的竞争。这种竞争促使传统的视频服务提供商加速其视频服务从广播视频到运营商级IP视频流的过渡。但是,在提供大规模运营商级IP视频流服务方面存在重大挑战。对于压缩的视频序列,保证实时传输的关键是视频速率,缓冲和定时问题,因为压缩的视频图片通过IP网络从编码器输出传输到解码器输入。为了理解并最终解决这些问题,开发了一种压缩视频缓冲的数学理论,以解决IP视频流量监管问题,以实现端到端视频网络服务质量。特别是,为解码器缓冲区大小,网络传输速率,网络延迟和抖动以及视频源特性建立了一套全面的理论关系。例如,该理论可用于测量和比较用MPEG-2编码的视频流,高级视频编码和高效视频编码标准的突发性和延迟。还说明了该理论对由特定类别的路由器组成的IP网络的适用性。

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