缓慢但稳定:基于cap的客户端网络交互改善流媒体体验

Vengatanathan Krishnamoorthi, Niklas Carlsson, Emir Halepovic
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引用次数: 9

摘要

由于流媒体服务的广泛普及,许多流媒体客户端通常会在瓶颈链接上竞争自己的带宽份额。然而,在这样的环境下,现代流媒体客户端使用的速率自适应算法往往会导致不稳定和不公平,从而对播放体验产生负面影响。此外,移动客户端经常因为试图传输过高的视频比特率而浪费带宽。我们提出并评估了一个基于cap的框架,在该框架中,网络和客户端合作以提高整体体验质量(QoE)。首先,为了激励框架,我们使用实验室设置进行了全面的研究,表明固定速率上限既有好处(例如,节省数据,提高稳定性和公平性),也有缺点(例如,启动时间较长,失速后恢复较慢)。为了在保持优势的同时解决缺点,我们随后引入并评估了一个框架,该框架包括(i)缓冲感知速率上限,其中网络在视频启动期间和低缓冲条件下暂时提高客户端的速率上限,以及(ii)增强感知的客户端自适应算法,该算法在增强期间优化比特率选择。结合网络和客户机之间的信息共享,这些机制被证明可以提高QoE,同时减少浪费的带宽。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Slow but Steady: Cap-Based Client-Network Interaction for Improved Streaming Experience
Due to widespread popularity of streaming services, many streaming clients typically compete over bottleneck links for their own bandwidth share. However, in such environments, the rate adaptation algorithms used by modern streaming clients often result in instability and unfairness, which negatively affects the playback experience. In addition, mobile clients often waste bandwidth by trying to stream excessively high video bitrates. We present and evaluate a cap-based framework in which the network and clients cooperate to improve the overall Quality of Experience (QoE). First, to motivate the framework, we conduct a comprehensive study using the lab setup showing that a fixed rate cap comes with both benefits (e.g., data savings, improved stability and fairness) and drawbacks (e.g., higher startup times and slower recovery after stalls). To address the drawbacks while keeping the benefits, we then introduce and evaluate a framework that includes (i) buffer-aware rate caps in which the network temporarily boosts the rate cap of clients during video startup and under low buffer conditions, and (ii) boost-aware client-side adaptation algorithms that optimize the bitrate selection during the boost periods. Combined with information sharing between the network and clients, these mechanisms are shown to improve QoE, while reducing wasted bandwidth.
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