Stable Peers: Existence, Importance, and Application in Peer-to-Peer Live Video Streaming

Feng Wang, Jiangchuan Liu, Y. Xiong
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引用次数: 176

Abstract

This paper presents a systematic in-depth study on the existence, importance, and application of stable nodes in peer- to-peer live video streaming. Using traces from a real large-scale system as well as analytical models, we show that, while the number of stable nodes is small throughout a whole session, their longer lifespans make them constitute a significant portion in a per-snapshot view of a peer-to-peer overlay. As a result, they have substantially affected the performance of the overall system. Inspired by this, we propose a tiered overlay design, with stable nodes being organized into a tier-1 backbone for serving tier-2 nodes. It offers a highly cost-effective and deployable alternative to proxy-assisted designs. We develop a comprehensive set of algorithms for stable node identification and organization. Specifically, we present a novel structure, Labeled Tree, for the tier-1 overlay, which, leveraging stable peers, simultaneously achieves low overhead and high transmission reliability. Our tiered framework flexibly accommodates diverse existing overlay structures in the second tier. Our extensive simulation results demonstrated that the customized optimization using selected stable nodes boosts the streaming quality and also effectively reduces the control overhead. This is further validated through prototype experiments over the PlanetLab network.
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稳定对等体:在点对点视频直播中的存在、重要性及应用
本文系统深入地研究了稳定节点在点对点视频直播中的存在、重要性及其应用。使用来自真实大规模系统的跟踪以及分析模型,我们表明,虽然稳定节点的数量在整个会话中很小,但它们的寿命更长,使它们在点对点覆盖的每个快照视图中构成重要部分。因此,它们实质上影响了整个系统的性能。受此启发,我们提出了分层覆盖设计,将稳定节点组织成第1层骨干网,为第2层节点提供服务。它为代理辅助设计提供了一种高成本效益和可部署的替代方案。我们开发了一套完整的稳定节点识别和组织算法。具体来说,我们提出了一种新的结构,标记树,用于第一层覆盖,它利用稳定的对等体,同时实现低开销和高传输可靠性。我们的分层框架在第二层灵活地容纳各种现有的覆盖结构。大量的仿真结果表明,选择稳定节点的自定义优化提高了流质量,也有效地降低了控制开销。通过PlanetLab网络上的原型实验进一步验证了这一点。
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