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CliqueStream: An Efficient and Fault-resilient Live Streaming Network on a Clustered Peer-to-peer Overlay

机译:Cliqustream:集群对等覆盖层上的高效和故障弹性直播网络

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Several overlay-based live multimedia streaming platforms have been proposed in the recent peer-to-peer streaming literature. In most of the cases, the overlay neighbors are chosen randomly for robustness of the overlay. However, this causes nodes that are distant in terms of proximity in the underlying physical network to become neighbors, and thus data travels unnecessary distances before reaching the destination. For efficiency of bulk data transmission like multimedia streaming, the overlay neighborhood should resemble the proximity in the underlying network. In this paper, we exploit the proximity and redundancy properties of a recently proposed clique-based clustered overlay network, named eQuus, to build efficient as well as robust overlays for multimedia stream dissemination. To combine the efficiency of content pushing over tree structured overlays and the robustness of data-driven mesh overlays, higher capacity stable nodes are organized in tree structure to carry the long haul traffic and less stable nodes with intermittent presence are organized in localized meshes. The overlay construction and fault-recovery procedures are explained in details. Simulation study demonstrates the good locality propoerties of the platform. The outage time and control overhead induced by the failure recovery mechanism are minimal as demonstrated by the analysis.
机译:在最近的对等流文献中提出了几种基于覆盖的实时多媒体流平台。在大多数情况下,覆盖邻居随机选择覆盖物的鲁棒性。然而,这使得在底层物理网络的接近度成为邻居的邻近的邻近的节点,因此数据在到达目的地之前行进不必要的距离。为了批量数据传输的效率,如多媒体流,覆盖邻域应该类似于底层网络的邻近。在本文中,我们利用了最近提出的基于Clique的群集覆盖网络,命名为Equus的接近度和冗余属性,以构建高效以及用于多媒体流传播的强大叠加。为了结合推动树结构覆盖的内容的效率和数据驱动网格覆盖的鲁棒性,在树结构中组织了更高容量的稳定节点,以携带长途流量,并且在局部网格中组织了间歇存在的稳定节点。详细说明覆盖结构和故障恢复程序。仿真研究展示了平台的良好地位前提。由于分析所证明,故障恢复机制引起的停电时间和控制开销是最小的。

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