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Interconnection of Large Scale Unstructured P2P Networks: Modeling and Analysis

机译:大型非结构化P2P网络的互连:建模与分析

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Interconnection of multiple P2P networks has emerged as a viable solution to increase system reliability and fault-tolerance as well as to increase resource availability. In this paper we consider interconnection of large scale unstructured P2P networks by means of special nodes (called Synapses) that are co-located in more than one overlay. Synapses act as trait d'union by forwarding a query to all the P2P networks they belong to. Modeling and analysis of the resulting interconnected system is crucial to design efficient and effective search algorithms and to control the cost of interconnection. To this end, we develop a generalized random graph based model that is validated against simulations and it is used to investigate the performance of search algorithms for different interconnection costs and to provide some insight in the characteristics of the interconnection of a large number of P2P networks.
机译:多个P2P网络的互连已成为可行的解决方案,以提高系统可靠性和容错以及提高资源可用性。在本文中,我们考虑通过专用节点(称为突触)在多于一个覆盖层中互连大规模非结构化P2P网络。突触通过将查询转发到他们所属的所有P2P网络来充当特征D'联盟。所得互连系统的建模与分析对于设计有效且有效的搜索算法至关重要,并控制互连成本。为此,我们开发了一种基于随机图的基于模型,用于验证模拟,并且它用于研究搜索算法的性能,以实现不同的互连成本,并提供一些关于大量P2P网络的互连特性的识别。

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