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Location awareness in unstructured peer-to-peer systems

机译:非结构化对等系统中的位置感知

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Peer-to-peer (P2P) computing has emerged as a popular model aiming at further utilizing Internet information and resources. However, the mechanism of peers randomly choosing logical neighbors without any knowledge about underlying physical topology can cause a serious topology mismatch between the P2P overlay network and the physical underlying network. The topology mismatch problem brings great stress in the Internet infrastructure. It greatly limits the performance gain from various search or routing techniques. Meanwhile, due to the inefficient overlay topology, the flooding-based search mechanisms cause a large volume of unnecessary traffic. Aiming at alleviating the mismatching problem and reducing the unnecessary traffic, we propose a location-aware topology matching (LTM) technique. LTM builds an efficient overlay by disconnecting slow connections and choosing physically closer nodes as logical neighbors while still retaining the search scope and reducing response time for queries. LTM is scalable and completely distributed in the sense that it does not require any global knowledge of the whole overlay network. The effectiveness of LTM is demonstrated through simulation studies.
机译:对等(P2P)计算已成为一种流行的模型,旨在进一步利用Internet信息和资源。但是,对等方在没有任何有关基础物理拓扑的知识的情况下随机选择逻辑邻居的机制会导致P2P覆盖网络和物理基础网络之间的拓扑严重不匹配。拓扑不匹配问题给Internet基础结构带来了巨大压力。它极大地限制了各种搜索或路由技术带来的性能提升。同时,由于无效的覆盖拓扑,基于泛洪的搜索机制导致大量不必要的流量。为了减轻不匹配问题并减少不必要的流量,我们提出了一种位置感知拓扑匹配(LTM)技术。 LTM通过断开慢速连接并选择物理上更接近的节点作为逻辑邻居来构建有效的覆盖,同时仍保留搜索范围并减少查询的响应时间。 LTM具有可扩展性和完全分布式的意义,因为它不需要整个覆盖网络的任何全局知识。 LTM的有效性通过仿真研究得到证明。

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