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A Control-Theoretic Approach for Dynamic Adaptive Video Streaming over HTTP

机译:HTTP上的动态自适应视频流的控制理论方法

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User-perceived quality-of-experience (QoE) is critical in Internet video applications as it impacts revenues for content providers and delivery systems. Given that there is little support in the network for optimizing such measures, bottlenecks could occur anywhere in the delivery system. Consequently, a robust bitrate adaptation algorithm in client-side players is critical to ensure good user experience. Previous studies have shown key limitations of state-of-art commercial solutions and proposed a range of heuristic fixes. Despite the emergence of several proposals, there is still a distinct lack of consensus on: (1) How best to design this client-side bitrate adaptation logic (e.g., use rate estimates vs. buffer occupancy); (2) How well specific classes of approaches will perform under diverse operating regimes (e.g., high throughput variability); or (3) How do they actually balance different QoE objectives (e.g., startup delay vs. re-buffering). To this end, this paper makes three key technical contributions. First, to bring some rigor to this space, we develop a principled control-theoretic model to reason about a broad spectrum of strategies. Second, we propose a novel model predictive control algorithm that can optimally combine throughput and buffer occupancy information to outperform traditional approaches. Third, we present a practical implementation in a reference video player to validate our approach using realistic trace-driven emulations.
机译:用户感知的体验质量(QoE)在Internet视频应用中至关重要,因为它会影响内容提供商和交付系统的收入。鉴于网络中很少有优化此类措施的支持,因此瓶颈可能会出现在交付系统中的任何地方。因此,客户端播放器中强大的比特率自适应算法对于确保良好的用户体验至关重要。先前的研究表明了最新的商业解决方案的关键局限性,并提出了一系列启发式解决方案。尽管出现了一些建议,但在以下方面仍然明显缺乏共识:(1)如何最好地设计这种客户端比特率自适应逻辑(例如,使用率估计与缓冲区占用率); (2)特定类别的方法在不同的操作机制(例如,高吞吐量可变性)下的性能如何;或(3)如何实际平衡不同的QoE目标(例如,启动延迟与重新缓冲)。为此,本文做出了三个关键的技术贡献。首先,为了给这个空间带来一些严谨性,我们开发了一种有原则的控制理论模型来推理各种策略。其次,我们提出了一种新颖的模型预测控制算法,该算法可以最佳地结合吞吐量和缓冲区占用信息,从而胜过传统方法。第三,我们在参考视频播放器中提出了一种实际的实现方式,以使用逼真的跟踪驱动仿真来验证我们的方法。

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