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On Managing Quality of Experience of Multiple Video Streams in Wireless Networks

机译:无线网络中多个视频流体验质量的管理

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Managing the Quality-of-Experience (QoE) of video streaming for wireless clients is becoming increasingly important due to the rapid growth of video traffic on wireless networks. The inherent variability of the wireless channel as well as the Variable Bit Rate (VBR) of the compressed video streams make QoE management a challenging problem. In this paper, we investigate scheduling algorithms to transmit multiple video streams from a base station to mobile clients. We present an epoch-by-epoch framework to fairly allocate wireless transmission slots to streaming videos. In each epoch, our scheme reduces the vulnerability to stalling by allocating slots to videos in a way that maximizes the minimum “playout lead” across all videos. We show that the problem of allocating slots fairly is NP-complete even for a constant number of videos. We then present a fast lead-aware greedy scheduling algorithm. Our greedy algorithm is optimal when the channel quality of a user remains unchanged within an epoch. Our experimental results, based on public MPEG-4 video traces and wireless channel traces that we collected from a WiMAX test-bed, show that the lead-aware greedy approach results in a fair distribution of stalls across the clients when compared to other algorithms, while still maintaining similar or fewer average number of stalls per client.
机译:由于无线网络上视频流量的快速增长,为无线客户端管理视频流的体验质量(QoE)变得越来越重要。无线通道的固有可变性以及压缩视频流的可变比特率(VBR)使QoE管理成为一个具有挑战性的问题。在本文中,我们研究了将多个视频流从基站传输到移动客户端的调度算法。我们提出了一个逐个时期的框架,以公平地将无线传输时隙分配给流视频。在每个时期,我们的方案都通过在视频中分配广告位来最大程度地降低所有视频的“播放率”,从而降低了停顿的风险。我们表明,即使对于恒定数量的视频,公平分配时隙的问题也是NP完全的。然后,我们提出了一种快速的铅感知贪婪调度算法。当用户的信道质量在一个时期内保持不变时,我们的贪婪算法是最佳的。我们的实验结果基于从WiMAX测试台收集到的公共MPEG-4视频轨迹和无线通道轨迹得出的结果表明,与其他算法相比,领先者感知的贪婪方法会导致客户端之间的停顿情况公平分配,同时仍保持每个客户的平均摊位数量相近或更少。

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