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Utility Maximization in Peer-to-Peer Systems With Applications to Video Conferencing

机译:对等系统在视频会议中的应用中的效用最大化

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In this paper, we study the problem of utility maximization in peer-to-peer (P2P) systems, in which aggregate application-specific utilities are maximized by running distributed algorithms on P2P nodes, which are constrained by their uplink capacities. For certain P2P topologies, we show that routing along a linear number of trees per source can achieve the largest rate region that can be possibly obtained by intrasession and intersession network coding. This observation allows us to develop a simple multitree formulation for the problem. For the resulting nonstrictly concave optimization problem, we develop a Primal-dual distributed algorithm and prove its global convergence using our proposed sufficient conditions. These conditions are general and add understanding to the convergence of primal-dual algorithms under nonstrictly concave settings. We implement the proposed distributed algorithm in a peer-assisted multiparty conferencing system by utilizing only end-to-end delay measurements between P2P nodes. We demonstrate its superior performance through actual experiments on a LAN testbed and the Internet.
机译:在本文中,我们研究了点对点(P2P)系统中效用最大化的问题,在该系统中,通过在P2P节点上运行分布式算法来最大化特定于应用程序的总效用,这些算法受其上行链路容量的限制。对于某些P2P拓扑,我们表明,沿着每个源的线性树数进行路由可以实现可能通过会话内和会话间网络编码获得的最大速率区域。该观察结果使我们能够为该问题开发简单的多树公式。对于由此产生的非严格凹优化问题,我们开发了Primal-dual分布式算法,并使用我们提出的充分条件证明了其全局收敛性。这些条件是通用的,并增加了对在非严格凹设置下原始对偶算法收敛的理解。通过仅利用P2P节点之间的端到端延迟测量,我们在对等方辅助的多方会议系统中实现了建议的分布式算法。我们通过在LAN测试平台和Internet上进行的实际实验证明了其卓越的性能。

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