多层P2P网络中的分布式缓存与自适应搜索

Chen Wang, Li Xiao, Yunhao Liu, Pei Zheng
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引用次数: 73

摘要

为了提高gnutella类非结构化点对点(P2P)网络的可扩展性,在一些早期的工作中提出了统一索引缓存(UIC)机制。在UIC中,查询结果缓存在逆查询路径上的所有对等点中,以便其他对等点的相同查询可以从它们附近缓存的结果中得到响应。然而,我们的实验表明,UIC方法会导致相邻对等体之间大量重复和不必要的项缓存。为了提高搜索效率,我们提出了一种分布式缓存机制,该机制将缓存结果分布在相邻的对等体中。此外,基于分布式缓存机制,构建了一种自适应搜索方法,该方法有选择地将查询转发给对等节点,并有很大可能提供期望的缓存结果。上述所有增强功能都在称为分布式缓存和自适应搜索(DiCAS)的协议中定义。在DiCAS增强Gnutella网络中,所有的对等体在逻辑上被划分为多个层,并且同一层中的对等体具有相同的组ID。查询泛滥被限制在匹配组ID的一层。仿真研究表明,在索引缓存和搜索空间划分的帮助下,DiCAS协议可以在不降低查询成功率的情况下显著减少非结构化P2P系统中的网络搜索流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed caching and adaptive search in multilayer P2P networks
To improve the scalability of Gnutella-like unstructured peer-to-peer (P2P) networks, a uniform index caching (UIC) mechanism was suggested in some earlier work. In UIC, query results are cached in all peers along the inverse query path such that the same query of other peers can be replied from their nearby-cached results. However, our experiments show that the UIC method causes a large amount of duplicated and unnecessary caching of items among neighboring peers. Aiming at improving the search efficiency, we propose a distributed caching mechanism, which distributes the cache results among neighboring peers. Furthermore, based on the distributed caching mechanism, an adaptive search approach is built which selectively forwards the query to the peers with a high probability of providing the desired cache results. All the enhancements above are defined in a protocol called distributed caching and adaptive search (DiCAS). In the DiCAS enhanced Gnutella network, all the peers are logically divided into multiple layers, with the character that all the peers in the same layer have the same group ID. The query flooding is restricted in one layer with the matched group ID. Our simulation study shows that, with the help of the index caching and search space division, the DiCAS protocol can significantly reduce the network search traffic in unstructured P2P systems without degrading query success rate.
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