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Exploiting peer's location information for improving routing and throughput performance in DHT systems

机译:利用对等方的位置信息以改善DHT系统中的路由和吞吐量性能

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Ignoring the physical relationship between two peers, traditional structured Peer-to-Peer (P2P) systems, whose peers are arranged in a logical ring according to Distributed Hash Table (DHT), have some defects on delay and bandwidth for physical neighbor peers. We proposed a layered network structure to make full use of the location information of each peer. In this structure, all peers are separated into several groups according to their location information indicated by Hilbert ID. The super-node, one peer elected in each group, forms the higher layer and administrates other peers in the same group by using the load-status table. Based on this system model, the Location-aware Chord Routing (LCR) protocol and the Location-aware P2P Caching (LPC) strategy are proposed to improve system's performance. Simulation results show the LCR could reduce the hops of routing and save routing distance while the LPC has remarkable performance at lowering the drop-rate of access request and improving the system throughput.
机译:忽略两个对等点之间的物理关系,传统的结构化对等(P2P)系统的对等点根据分布式哈希表(DHT)排列在逻辑环中,在物理邻居对等点的延迟和带宽方面存在一些缺陷。我们提出了一个分层的网络结构,以充分利用每个对等点的位置信息。在这种结构中,所有对等方根据希尔伯特ID指示的位置信息分为几个组。超级节点(在每个组中选出一个对等体)构成高层,并通过使用负载状态表来管理同一组中的其他对等体。基于该系统模型,提出了位置感知的Chord路由协议(LCR)和位置感知的P2P缓存(LPC)策略,以提高系统的性能。仿真结果表明,LCR可以减少路由的跳数并节省路由距离,而LPC在降低访问请求的丢弃率和提高系统吞吐量方面具有显着的性能。

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