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Analytical QoE Models for Bit-Rate Switching in Dynamic Adaptive Streaming Systems

机译:动态自适应流系统中比特率切换的解析QoE模型

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Video streaming service in wireless networks is increasingly using dynamic selection of video bit-rates to provide a high quality of user experience (QoE). The bit-rate switching mechanism, performed at client side, plays a key role in determining QoE metrics. In this paper, we present the first analytical framework to compute starvation probability of playout buffer, continuous playback time and mean video quality, given the bit-rate switching logics. Wireless channel is modeled as a continuous time Markov process, and playout buffer is modeled as a fluid queue with Markov modulated fluid arrival. We construct a set of ordinary differential equations (ODEs) to characterize the dynamics of starvation probability and expected continuous playback time with regard to buffer length, and simple models to analyze mean bit-rate for different bit-rate switching algorithms. Our framework is very general in that by adding appropriate parameters, it can be utilized to predict the QoE metrics of dynamic adaptive streaming with a variety of features: i) buffer-aware bit-rate switching ii) (im)patience of the user, and iii) receiver-side flow control.
机译:无线网络中的视频流服务越来越多地使用视频比特率的动态选择来提供高质量的用户体验(QoE)。在客户端执行的比特率切换机制在确定QoE指标方面起着关键作用。在本文中,我们给出了第一个分析框架,在给定了比特率切换逻辑的情况下,该框架可以计算出播放缓冲区的饥饿概率,连续播放时间和平均视频质量。无线信道被建模为连续时间马尔可夫过程,播出缓冲区被建模为具有马尔可夫调制流体到达的流体队列。我们构造了一组常微分方程(ODE)来表征饥饿概率和预期的连续播放时间(关于缓冲区长度)的动力学特性,并建立了简单模型来分析不同比特率切换算法的平均比特率。我们的框架非常通用,可以通过添加适当的参数来预测具有多种功能的动态自适应流的QoE指标:i)感知缓冲区的比特率切换ii)用户的(im)耐心, iii)接收器侧流量控制。

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