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Quality assessment of the packet transport of peer-to-peer video traffic in high-speed networks

机译:高速网络中对等视频流量的分组传输的质量评估

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Dealing with the quality of the packet transport of multimedia services in overlay networks, we present the relation between the packet missing probability P_m of transmitted packets of a variable bitrate video stream and distributions of the length of the overlay path, the upload capacity of nodes and the playback delay at a destination node. As active streams share the capacity of a transport channel, we select an equivalent bandwidth based on a bufferless fluid-flow model. A smallest equivalent capacity u~* which provides the best trade-off between the mean delay between successfully delivered packets and the mean lossless time that is determined by the duration of consecutive successful packet transmissions is proposed as an optimal upload capacity, u~* is less than the peak rate. The playback delay b is selected as a quantile of a packet delay distribution. The normalized distribution of the length of the overlay path is derived to be geometric. The estimation of u~* and b requires inter-arrival times between packets, packet lengths of a peer-to-peer video flow and end-to-end packet delays. For SopCast 1PTV data it is concluded that the signaling traffic does not impact on u~* and increasing b leads to the decrease of P_m.
机译:针对覆盖网络中多媒体服务的分组传输质量,我们提出了可变比特率视频流的传输分组的分组丢失概率P_m与覆盖路径的长度分布,节点的上传容量和目的节点的播放延迟。由于活动流共享传输通道的容量,因此我们基于无缓冲流体流动模型选择等效带宽。提出了一个最小的等效容量u〜*作为最佳上载容量,该容量在成功传输的数据包之间的平均延迟与由连续成功的数据包传输的持续时间确定的平均无损时间之间取得最佳平衡。小于峰值速率。选择回放延迟b作为分组延迟分布的分位数。覆盖路径的长度的归一化分布被导出为几何形状。 u和b的估计需要数据包之间的到达时间,对等视频流的数据包长度以及端对端数据包延迟。对于SopCast 1PTV数据,可以得出结论,信令流量不影响u_ *,并且b的增加导致P_m的减少。

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