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Resilience of structured P2P systems under churn: The reachable component method

机译:流失下结构化P2P系统的弹性:可达组件方法

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Users in a peer-to-peer (P2P) system join and leave the network in a continuous manner. Understanding the resilience properties of P2P systems under high rate of node churn becomes important. In this work, we first find that a lifetime-based dynamic churn model for a P2P network that has reached stationarity is reducible to a uniform node failure model. This is a simple yet powerful result that bridges the gap between the complex dynamic churn models and the more tractable uniform failure model. We further develop the reachable component method and derive the routing performance of a wide-range of structured P2P systems under varying rates of churn. We find that the de Bruijn graph based routing systems offer excellent resilience under extremely high rate of node turnovers, followed by a group of routing systems that include CAN, Kademlia, Chord and randomized-Chord. We show that our theoretical predictions agree well with large-scale simulation results. We finish by suggesting methods to further improve the routing performance of dynamic P2P systems in the presence of churn and failures.
机译:对等(P2P)系统中的用户以连续的方式加入和离开网络。了解高节点流失率下的P2P系统的弹性特性变得很重要。在这项工作中,我们首先发现,达到平稳性的P2P网络基于生命周期的动态客户流失模型可以简化为统一节点故障模型。这是一个简单而强大的结果,它弥合了复杂的动态客户流失模型与更易处理的统一故障模型之间的差距。我们进一步开发了可达组件方法,并得出了在各种变动率下的各种结构化P2P系统的路由性能。我们发现,基于de Bruijn图的路由系统在极高的节点周转率下可提供出色的弹性,其后是包括CAN,Kademlia,Chord和randomized-Chord在内的一组路由系统。我们表明,我们的理论预测与大规模仿真结果非常吻合。最后,我们提出了在存在客户流失和故障的情况下进一步改善动态P2P系统的路由性能的方法。

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