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首页> 外文期刊>IEEE/ACM Transactions on Networking >On Static and Dynamic Partitioning Behavior of Large-Scale P2P Networks
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On Static and Dynamic Partitioning Behavior of Large-Scale P2P Networks

机译:大型P2P网络的静态和动态分区行为

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摘要

In this paper, we analyze the problem of network disconnection in the context of large-scale P2P networks and understand how both static and dynamic patterns of node failure affect the resilience of such graphs. We start by applying classical results from random graph theory to show that a large variety of deterministic and random P2P graphs almost surely (i.e., with probability $1-o(1)$) remain connected under random failure if and only if they have no isolated nodes. This simple, yet powerful, result subsequently allows us to derive in closed-form the probability that a P2P network develops isolated nodes, and therefore partitions, under both types of node failure. We finish the paper by demonstrating that our models match simulations very well and that dynamic P2P systems are extremely resilient under node churn as long as the neighbor replacement delay is much smaller than the average user lifetime.
机译:在本文中,我们分析了大规模P2P网络环境下的网络断开问题,并了解了节点故障的静态和动态模式如何影响此类图的弹性。我们从应用随机图论的经典结果开始,表明当且仅当它们没有孤立的情况下,几乎确定的各种确定性和随机P2P图(即,概率为$ 1-o(1)$)在随机故障下仍然保持连接。节点。这个简单而强大的结果随后使我们能够以封闭形式得出在两种类型的节点故障下P2P网络发展孤立节点并因此进行分区的可能性。在本文的最后,我们证明了我们的模型与仿真非常吻合,并且动态P2P系统在节点搅动下具有极强的弹性,只要邻居替换延迟远小于平均用户寿命即可。

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