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On Reducing Delay in Mesh-Based P2P Streaming: A Mesh-Push Approach

机译:基于网格的P2P流中减少延迟的方法:网格推方法

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摘要

The peer-assisted streaming paradigm has been widely employed to distribute live video data on the internet recently. In general, the mesh-based pull approach is more robust and efficient than the tree-based push approach. However, pull protocol brings about longer streaming delay, which is caused by the handshaking process of advertising buffer map message, sending request message and scheduling of the data block. In this paper, we propose a new approach, mesh-push, to address this issue. Different from the traditional pull approach, mesh-push implements block scheduling algorithm at sender side, where the block transmission is initiated by the sender rather than by the receiver. We first formulate the optimal upload bandwidth utilization problem, then present the mesh-push approach, in which a token protocol is designed to avoid block redundancy; a min-cost flow model is employed to derive the optimal scheduling for the push peer; and a push peer selection algorithm is introduced to reduce control overhead. Finally, we evaluate mesh-push through simulation, the results of which show mesh-push outperforms the pull scheduling in streaming delay, and achieves comparable delivery ratio at the same time.
机译:对等辅助流式传输范式最近已广泛用于在Internet上分发实时视频数据。通常,基于网格的拉方法比基于树的推方法更健壮和高效。然而,拉协议带来了更长的流传输延迟,这是由通告缓冲区映射消息,发送请求消息和调度数据块的握手过程所引起的。在本文中,我们提出了一种新的方法Mesh-push来解决此问题。与传统的拉动方法不同,网格推送在发送方实现块调度算法,其中块传输由发送方而不是接收方发起。我们首先提出最优的上载带宽利用率问题,然后提出网格推方法,其中设计了一种令牌协议以避免块冗余。采用最小成本流模型,推入对等体的最优调度;为了减少控制开销,引入了推送对等体选择算法。最后,我们通过仿真评估了网格推,其结果表明网格推在流延迟方面优于拉调度,并同时达到可比的传递比率。

著录项

  • 来源
    《IEICE Transactions on Communications》 |2012年第2期|p.426-434|共9页
  • 作者单位

    Information Network Lab of EEIS Department, University of Science and Technology of China (USTC), Hefei, 230027 China;

    Information Network Lab of EEIS Department, University of Science and Technology of China (USTC), Hefei, 230027 China;

    Information Network Lab of EEIS Department, University of Science and Technology of China (USTC), Hefei, 230027 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    peer-to-peer; streaming delay; mesh topology; mesh-push schedule;

    机译:点对点;流延迟网格拓扑;网格推送时间表;

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