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Node Isolation Model and Age-Based Neighbor Selection in Unstructured P2P Networks

机译:非结构化P2P网络中的节点隔离模型和基于年龄的邻居选择

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Previous analytical studies of unstructured P2P resilience have assumed exponential user lifetimes and only considered age-independent neighbor replacement. In this paper, we overcome these limitations by introducing a general node-isolation model for heavy-tailed user lifetimes and arbitrary neighbor-selection algorithms. Using this model, we analyze two age-biased neighbor-selection strategies and show that they significantly improve the residual lifetimes of chosen users, which dramatically reduces the probability of user isolation and graph partitioning compared with uniform selection of neighbors. In fact, the second strategy based on random walks on age-proportional graphs demonstrates that, for lifetimes with infinite variance, the system monotonically increases its resilience as its age and size grow. Specifically, we show that the probability of isolation converges to zero as these two metrics tend to infinity. We finish the paper with simulations in finite-size graphs that demonstrate the effect of this result in practice.
机译:先前对非结构化P2P弹性的分析研究假设了用户的指数寿命,并且仅考虑了与年龄无关的邻居替换。在本文中,我们通过引入用于重尾用户生存期的通用节点隔离模型和任意邻居选择算法来克服这些限制。使用该模型,我们分析了两种年龄偏向的邻居选择策略,并显示它们显着提高了所选用户的剩余寿命,与邻居的均匀选择相比,这大大降低了用户隔离和图分区的可能性。实际上,基于年龄比例图的随机游走的第二种策略表明,对于具有无限方差的生命,系统会随着年龄和规模的增长而单调增加其弹性。具体来说,我们表明,随着这两个指标趋于无穷大,隔离的概率收敛到零。我们在有限尺寸图中通过模拟来完成本文,以在实践中证明此结果的效果。

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