首页> 外文会议>Embedded and Ubiquitous Computing Workshops : UISW, NCUS, SecUbiq, USN, and TAUES >Exploring Small-World-Like Topologies Via SplitProber: Turning Power Laws into an Advantage in Unstructured Overlays
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Exploring Small-World-Like Topologies Via SplitProber: Turning Power Laws into an Advantage in Unstructured Overlays

机译:通过Splitprober探索小世界之类的拓扑:将电力规律转变为非结构化叠加的优势

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Recent unstructured Peer-to-Peer systems, represented by Gnutella and Freenet, offer an administration-free and fault-tolerant application-level overlay network. While elegant from a theoretical perspective, these systems have some serious disadvantages. First, due to knowing very little about the nature of the network topology, the search algorithms operating on these networks result in fatal scaling problems. Second, these systems rely on application-level routing, which may be inefficient with respect to network delays and bandwidth consumption. In this paper, we propose a novel search algorithm, called SplitProber, to explore the small-world-like topologies of these networks efficiently and scalablely, by turning the power-law degree distributions in these networks to an advantage, and by making discriminative use of nodes according to their different roles in the network. As a result, we are able to reconcile the conflict of remedying the mismatch between the overlay topology and its projection on the underlying physical network, while at the same time navigating these networks with a guaranteed high efficiency and using only local knowledge as cues. Our simulation results indicate that the proposed algorithm outperforms several other well-known methods with significant performance gains.
机译:最近由Gnutella和Freenet表示的非结构化点对点系统,提供了无托管和容错的应用程序级覆盖网络。虽然从理论的角度来看,这些系统具有一些严重的缺点。首先,由于了解网络拓扑的性质,因此在这些网络上运行的搜索算法导致致命的缩放问题。其次,这些系统依赖于应用程序级路由,这对于网络延迟和带宽消耗可能效率低。在本文中,我们提出了一种名为Splitprober的新型搜索算法,通过将这些网络中的电力法度分布转变为优势,探讨这些网络的小世界样子拓扑,以促进这些网络的优势,并通过制作歧视性使用节点根据其在网络中的不同角色。因此,我们能够协调覆盖拓扑结构之间的不匹配和其投影在底层物理网络上的冲突,同时使用保证的高效率,并仅使用当地知识作为提示。我们的仿真结果表明,该算法优于具有显着性能增益的其他几种其他众所周知的方法。

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