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A Video Bitrate Adaptation and Prediction Mechanism for HTTP Adaptive Streaming

机译:HTTP自适应流的视频比特率自适应和预测机制

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The Hypertext Transfer Protocol (HTTP) Adaptive Streaming (HAS) has now become ubiquitous and accounts for a large amount of video delivery over the Internet. But since the Internet is prone to bandwidth variations, HAS's up and down switching between different video bitratesto keep up with bandwidth variations leads to a reduction in Quality of Experience (QoE). In this article, we propose a video bitrate adaptation and prediction mechanism based on Fuzzy logic for HAS players, which takes into consideration the estimate of available network bandwidth as well as the predicted buffer occupancy level in order to proactively and intelligently respond to current conditions. This leads to two contributions: First, it allows HAS players to take appropriate actions, sooner than existing methods, to prevent playback interruptions caused by buffer underrun, reducing the ON-OFF traffic phenomena associated with current approaches and increasing the QoE. Second, it facilitates fair sharing of bandwidth among competing players at the bottleneck link. We present the implementation of our proposed mechanism and provide both empirical/QoE analysis and performance comparison with existing work. Our results show that, compared to existing systems, our system has (1) better fairness among multiple competing players by almost 50% on average and as much as 80% as indicated by Jain's fairness index and (2) better perceived quality of video by almost 8% on average and as much as 17%, according to the estimate the Mean Opinion Score (eMOS) model.
机译:超文本传输​​协议(HTTP)自适应流(HAS)现在变得无处不在,并且说明了Internet上大量的视频传递。但是,由于Internet容易出现带宽变化,因此HAS在不同视频比特率之间的上下切换会跟上带宽变化的趋势,从而导致体验质量(QoE)下降。在本文中,我们为HAS播放器提出了一种基于模糊逻辑的视频比特率自适应和预测机制,该机制考虑了可用网络带宽的估计以及预测的缓冲区占用水平,以便主动,智能地响应当前条件。这带来了两个贡献:首先,它允许HAS播放器比现有方法更快地采取适当的操作,以防止由于缓冲区不足引起的播放中断,减少与当前方法相关的ON-OFF流量现象,并提高QoE。其次,它促进了瓶颈链路上竞争参与者之间公平的带宽共享。我们介绍了我们提出的机制的实现,并提供了经验/ QoE分析以及与现有工作的绩效比较。我们的结果表明,与现有系统相比,我们的系统具有以下优势:(1)多个竞争参与者之间的公平性平均提高了近50%,Jain的公平性指数表明,公平性高达80%;(2)根据估算的平均意见得分(eMOS)模型,平均接近8%,高达17%。

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