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Understanding Overlay Characteristics of a Large-scale Peer-to-Peer IPTV System

机译:了解大规模点对点IpTV系统的覆盖特性

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摘要

This paper presents results from our measurement and modeling efforts on the large-scale peer- to-peer (p2p) overlay graphs spanned by the PPLive system, the most popular and largest p2p IPTV (Internet Protocol Television) system today. Unlike other previous studies on PPLive, which focused on either network-centric or user-centric measurements of the system, our study is unique in (a) focusing on PPLive overlay-specific characteristics, and (b) being the first to derive mathematical models for its distributions of node degree, session length, and peer participation in simultaneous overlays.Our studies reveal characteristics of multimedia streaming p2p overlays that are markedly different from existing file-sharing p2p overlays. Specifically, we find that: (1) PPLive overlays are similar to random graphs in structure and thus more robust and resilient to the massive failure of nodes, (2) Average degree of a peer in the overlay is independent of the channel population size, (3) The availability correlation between PPLive peer pairs is bimodal, i.e., some pairs have highly correlated availability, while others have no correlation, (4) Unlike p2p file-sharing users, PPLive peers are impatient, (5) Session lengths (discretized, per channel) are typically geometrically distributed, (6) Channel population size is time-sensitive, self-repeated, event-dependent, and varies more than in p2p file-sharing networks, (7) Peering relationships are slightly locality-aware, (8) Peer participation in simultaneous overlays follows the Zipf distribution. We believe that our findings can be used to understand current large-scale p2p streaming systems for future planning of resource usage, and to provide useful and practical hints for future design of large-scale p2p streaming systems.
机译:本文介绍了我们在大规模的对等(p2p)覆盖图上进行的测量和建模工作所产生的结果,该图由PPLive系统(当今最受欢迎和最大的p2p IPTV(互联网协议电视)系统)跨越。与之前针对PPLive进行的其他研究不同,PPLive专注于以网络为中心或以用户为中心的系统测量,我们的研究在以下方面是独一无二的:(a)专注于PPLive覆盖特定的特性,并且(b)率先推导数学模型我们的研究揭示了多媒体流p2p覆盖的特征与现有的文件共享p2p覆盖明显不同。具体来说,我们发现:(1)PPLive覆盖与结构上的随机图相似,因此对节点的大规模故障更加健壮和有弹性;(2)覆盖中对等体的平均程度与通道总数无关, (3)PPLive对等体之间的可用性相关性是双峰的,即,某些对具有高度相关的可用性,而另一些对则没有相关性;(4)与p2p文件共享用户不同,PPLive对等体不耐烦,(5)会话长度(离散(每个频道),通常是几何分布的(6)频道人口规模是时间敏感的,自我重复的,与事件相关的,并且变化幅度大于p2p文件共享网络中的变化;(7)对等关系略微本地化, (8)同伴参与同步覆盖遵循Zipf分布。我们相信,我们的发现可用于了解当前的大型p2p流系统,以用于将来的资源使用计划,并为将来的大型p2p流系统设计提供有用和实用的提示。

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