A Selfish-SCM Based Scheme for Node Clustering in Decentralized Peer-to-Peer Networks

Yanxiang He, Haowen Liu
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Abstract

Node clustering has wide ranging applications in decentralized peer-to-peer (P2P) networks such as P2P file sharing systems, mobile ad-hoc networks, P2P sensor networks and so forth. We are interested in the dynamic cluster formation process and effective strategy designs of the nodes in a network. In this work, We propose a completely distributed approach for node clustering that based on the scaled coverage measure (SCM), a measure of the accuracy of the partition of the network into clusters. The novelty of our approach is to allow simultaneous adjustment by each node in joining a new cluster if it sees an immediate benefit from such a change. The acceptance of the new node in the cluster is determined by the improvement of the cluster in its SCM value. Simulation study shows that our approach derives a more accurate partition with less orphan nodes, and converges faster than previously proposed methods, for both random topologies and power law topologies.
一种基于自利单片机的分散点对点网络节点聚类方案
节点聚类在P2P文件共享系统、移动自组织网络、P2P传感器网络等分散的P2P网络中有着广泛的应用。我们对网络中节点的动态集群形成过程和有效策略设计感兴趣。在这项工作中,我们提出了一种完全分布式的节点聚类方法,该方法基于尺度覆盖度量(SCM),这是一种衡量网络划分为集群的准确性的度量。我们的方法的新颖之处在于,如果每个节点在加入新集群时看到这种变化可以立即受益,则允许它同时进行调整。集群中新节点的接受程度取决于集群的SCM值的改善程度。仿真研究表明,无论对于随机拓扑还是幂律拓扑,我们的方法都能以更少的孤立节点获得更精确的划分,并且收敛速度快于先前提出的方法。
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