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Quality-aware membership management for layered peer-to-peer streaming

机译:分层对等流的质量感知会员资格管理

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With the standardization of SVC, the scalable extension of H.264/AVC, layered peer-to-peer streaming has attracted more and more attention as it offers adaptability to network fluctuations and heterogeneous end users. Although overlay construction is important for system performance, not much effort has been spent on unstructured overlay construction for layered peer-to-peer streaming. Related work concentrates on layered streaming algorithms, and assumes that a list of peers for data exchange, called neighbors, is provided by traditional membership management protocols, e.g., SCAMP. Our previous studies have demonstrated that a random overlay is not good enough for layered peer-to-peer streaming. In this paper, we propose a new membership management protocol, based on peer sampling services. The protocol is quality-aware as it constructs the overlay so that (1) high capacity peers will be located at good positions in the overlay, e.g., close to the server, and (2) peers having similar capacity are likely to connect to each other. Both features are necessary to maximize bandwidth utilization of peers and to mitigate layer bottlenecks. With implementation of the protocol in PeerSim, we evaluate important graph properties of the overlay, constructed by the proposed protocol, to understand how it evolves during the streaming session with peer churn. Evaluation results show that the overlay is (1) scalable: it is stable with different sizes, from hundreds up to 10000 peers; and (2) robust: the good features are maintained or recovered fast under a high peer churn rate, and it only becomes disconnected when more than 86% of the peers are removed from the network.
机译:随着SVC的标准化,H.264 / AVC的可扩展延伸,分层的对等流媒体的可扩展延伸引起了越来越多的关注,因为它提供了对网络波动和异构最终用户的适应性。虽然覆盖结构对于系统性能很重要,但花费不多的努力都花了分层对等流的非结构化覆盖结构。相关的工作集中在分层流算法上,并假设传统的成员管理协议,例如Scamp,传统的成员管理协议提供了一个名为邻居的数据交换的对等体列表。我们以前的研究表明,随机覆盖物不足以用于分层的对等流的流。在本文中,我们提出了一种基于对等采样服务的新成员管理协议。该协议是质量感知的,因为它构造覆盖层,使得(1)高容量对等体将位于覆盖层中的良好位置,例如,靠近服务器,并且(2)具有相似容量的对等体可能会连接到每个其他。这两个特征都是最大限度地提高对等体的带宽利用率和减轻层瓶颈。通过在Peesrim中实现协议,我们评估由所提出的协议构建的覆盖层的重要图形属性,以了解它在与同伴流失期间的流媒体会话中的发展方式。评估结果表明,覆盖层是(1)可扩展:它具有不同尺寸的稳定,从数百到10000个同行; (2)强大的:在高分子流失率下保持良好的功能或快速恢复,并且当从网络中移除超过86%的同机时,它只变得断开。

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