A Novel Simple Distributed Algorithm for Cluster Organization of Wireless Sensor Networks

Nan Hua, Yi Guo
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Abstract

This paper proposes an innovative distributed algorithm for cluster organization of wireless sensor networks (WSN), named DSCO. Simple logic, connectionless information exchange and asynchronism are prominent features of the algorithm. DSCO involves three correlative processes: cluster organization, cluster reorganization and cluster self-healing. The process of cluster organization is the basic process of DSCO, which adopts random backoff strategy; the cluster reorganization and cluster self-healing processes are recursion of the former, which effectively simplifies the design of the algorithm. Furthermore, DSCO furthest isolates nodes and clusters, and reduces the reliance of global information to minimum, which is useful to reduce the pressure of data storage and processing in nodes, lessen the network traffic and enhance the anti-destroy ability of WSN. The algorithm simulation illustrates that DSCO can get fast clustering speed and uniform distribution of cluster nodes, proves its good performance on clustering rate and topology control, and shows good adaptability to large-scale WSN.
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一种新的简单分布式无线传感器网络聚类组织算法
本文提出了一种新颖的用于无线传感器网络(WSN)集群组织的分布式算法DSCO。简单的逻辑、无连接的信息交换和异步性是该算法的突出特点。DSCO涉及三个相互关联的过程:集群组织、集群重组和集群自愈。集群组织过程是DSCO的基本过程,采用随机后退策略;聚类重组和聚类自愈过程是前者的递归,有效地简化了算法的设计。此外,DSCO最大程度地隔离了节点和集群,将全局信息的依赖降到最低,有助于降低节点数据存储和处理的压力,减少网络流量,增强WSN的抗破坏能力。算法仿真结果表明,DSCO能获得较快的聚类速度和均匀的聚类节点分布,在聚类速率和拓扑控制方面具有良好的性能,对大规模WSN具有良好的适应性。
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