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Deadline-based Approach for Improving Delivery of SVC-based HTTP Adaptive Streaming Content

机译:基于截止日期的改进交付基于SVC的HTTP自适应流媒体内容的方法

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HTTP Adaptive Streaming (HAS) has several advantages compared to traditional streaming protocols, such as easy traversal of firewalls and reuse of widely deployed HTTP infrastructure. HAS content is temporally segmented, and encoded at different quality representations, allowing the video player to autonomously adapt to network conditions by adapting play-out quality between subsequent segment downloads. However, to guarantee continuous playback, current-generation HAS protocols require a large play-out buffer. This makes them ill-suited for live television, as it significantly increases the live signal delay. This paper proposes a novel HAS solution for live streaming services. A HAS video player was designed that can cope with buffers as small as 2 seconds. This obviously requires the player to more rapidly react to bandwidth changes, which was achieved by using the Scalable Video Coding (SVC) extension of the H.264 Advanced Video Coding (AVC) video codec. Moreover, an intelligent network proxy was developed that guarantees the delivery of the SVC base quality layer using Differentiated Services (DiffServ). Furthermore, a more dynamic deadline-based approach is proposed which allows the client itself to decide which segments should be prioritized based on the risk of running into a buffer starvation. This enables more efficient use of the prioritized channel, leading to less freezes and increased quality and stability. The combination of these technologies allows the video player to align its quality adaptation decisions to the available bandwidth more efficiently and completely avoid buffer starvations. The small buffer size also reduces the total live signal delay from multiple dozens to only a few seconds.
机译:HTTP自适应流(HAS)相比传统的流媒体协议,如防火墙的穿越方便和广泛部署HTTP基础设施的再利用有几个优点。包含内容在时间上分段,并在不同的质量表示编码,让视频播放器通过适应后续段下载与播放质量自动适应网络条件。然而,为了保证连续播放,当前一代的HAS协议需要大量播出缓冲器。这使得它们不适合用于电视直播,因为它显著增加了现场信号延迟。本文提出了一种新的对实时流服务解决方案。 A有视频播放器的设计,可与缓冲区应付小到2秒。这显然需要更迅速地反应带宽的变化,这是通过使用可伸缩视频编码H.264的高级视频(SVC)扩展编码(AVC)视频编解码器实现的播放器。此外,智能网络代理的开发,保证使用区分服务(DiffServ)的SVC基础质量层的递送。此外,一个更加动态的基于最后期限的做法,提出了允许客户端本身来决定哪些部分应该基于运行到缓冲区饥饿的风险优先。这使得能够更有效地使用信道优先级,从而导致较少的冻结和增加的质量和稳定性。这些技术的结合,使视频播放器更有效地调整其质量适应决定可用带宽,完全避免缓冲区STARVATIONS。小缓冲区的大小也减少了从多个几十到只有几秒钟住总信号延迟。

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