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oStream: asynchronous streaming multicast in application-layer overlay networks

机译:Ostream:应用层覆盖网络中的异步流组播

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摘要

Although initially proposed as the deployable alternative to Internet protocol multicast, the application-layer overlay network actually revolutionizes the way network applications can be built, since each overlay node is an end host and is able to carry out more functions than simply forwarding packets. The paper addresses the on-demand media distribution problem in the context of an overlay network. We take advantage of the strong buffering capabilities of end hosts, and propose a novel overlay multicast strategy, oStream. We have performed extensive analysis and performance evaluation with respect to the scalability and the efficiency of oStream. With respect to the required server bandwidth, we show that oStream defeats the theoretical lower bound of traditional multicast-based approaches, under both sequential and nonsequential stream access patterns. oStream is also robust against bursty requests. With respect to bandwidth consumption on the backbone network, we show that the benefit introduced by oStream overshadows the topological inefficiency (e.g., link stress and stretch) introduced by using application-layer multicast.
机译:尽管最初提出作为互联网协议组播的可部署替代方案,但是应用层覆盖网络实际上旋转了网络应用的方式构建的方式,因为每个覆盖节点是结束主机并且能够执行比简单转发分组更多的功能。本文在覆盖网络的上下文中解决了按需媒体分布问题。我们利用最终主机的强大缓冲功能,并提出了一种新颖的覆盖多播策略Ostream。我们对往可伸缩性和蒸馏程序效率进行了广泛的分析和性能评估。关于所需的服务器带宽,我们表明Ostream在顺序和非顺序流访问模式下击败了传统多播的方法的理论下限。 Ostream也对抗突发请求也是强大的。关于骨干网上的带宽消耗,我们表明Ostream引入的益处通过使用应用层组播引入的拓扑效率(例如,链接应力和拉伸)。

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