分层点对点系统的性能增强

B. K. Shrivastava, G. Khataniar, D. Goswami
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引用次数: 3

摘要

分散式点对点(P2P)架构的日益普及带来了一些挑战,例如如何处理高效的查找和查询路由、频繁的节点加入和离开以及可伸缩性问题。为了克服这些问题,提出了结构化P2P网络中几种基于密钥的确定性路由方法。然而,如果节点在处理速度、功率、稳定性和存储能力上是异构的,问题就会变得更糟。为了消除异构性,我们提出了一个两层分层分布式哈希表(DHT),其中节点分为三类:临时节点、稳定节点和完全稳定节点。我们在O(log(|Gj|))步内实现了组内查找和查询路由,其中|Gj|为目标组Gj中的(超级)对等体数,而组间查找则在O(1)步内实现。在平均情况下,由于节点的频繁加入和离开,我们在修复路由表时至少节省了66.67%的消息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Enhancement in Hierarchical Peer-to-Peer Systems
Increased popularity of decentralized peer-to-peer (P2P) architecture comes with several challenges, like how to handle efficient lookup and query routing, frequent joining and leaving of nodes and scalability problem. Several key based deterministic routing approaches in a structured P2P networks have been proposed to overcome with these problems. Still, problems become worse if nodes are heterogenous in processing speed, power, stability and storage capability. To bridge the heterogeneity, we propose a 2-tier hierarchical distributed hash table (DHT) in which nodes are classified into three categories: temporary, stable and fully stable nodes. We have achieved intra-group lookup and query routing in O(log(|Gj|)) steps, where |Gj| is the number of (super)peers in destination group Gj, while inter-group lookup in O(1) steps. We have also saved at least 66.67% messages in repairing the routing table due to frequent joining and leaving of nodes in average case.
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