A novel self-configuration mechanism for heterogeneous P2P networks

J. Wang, M. Vanninen
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引用次数: 9

Abstract

We propose a simple and efficient mechanism to self-configure semi-structured overlay networks for heterogeneous peer-to-peer systems with no global knowledge. The overlay network is constructed as a hierarchical graph based on peer power which is an aggregate measure of available resources. We use index based, random walk JOIN and LEAVE protocols to build the overlay network in which node degree and workload correspond to its peer power. We also propose an index based query scheme for peers to search documents in the network. Performance studies demonstrate that the proposed self-configuration protocol and search scheme are efficient and viable. The self-configured P2P network has significantly lower query cost than traditional Gnutella-like P2P systems. We further propose a caching assisted query mechanism where query results are cached by intermediate nodes along the search path, thereby exploiting the surplus storage power of the peers and further improving query efficiency. Caching assisted query permits a quicker response to subsequent queries for popular data without incurring the excessive overhead of globally replicated directory information. Our experimental study reveals that the caching assisted query provides an additional reduction of up to 40% in messages needed per query.
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一种新的异构P2P网络自配置机制
我们提出了一种简单有效的机制来自配置异构点对点系统的半结构化覆盖网络,无需全局知识。该覆盖网络是基于可用资源的聚合度量peer power的分层图。我们使用基于索引的随机行走JOIN和LEAVE协议来构建覆盖网络,其中节点度和工作负载对应于其对等体功率。我们还提出了一种基于索引的对等体查询方案来搜索网络中的文档。性能研究表明,所提出的自配置协议和搜索方案是有效可行的。自配置P2P网络与传统的类gnutella P2P系统相比,查询成本明显降低。我们进一步提出了一种缓存辅助查询机制,将查询结果沿搜索路径由中间节点缓存,从而利用对等节点的多余存储能力,进一步提高查询效率。缓存辅助查询允许更快地响应对流行数据的后续查询,而不会产生全局复制目录信息的过多开销。我们的实验研究表明,缓存辅助查询可以将每个查询所需的消息额外减少多达40%。
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