无线Ad-hoc和传感器网络中基于拓扑的簇头候选选择

Matthias R. Brust, A. Andronache, S. Rothkugel, Z. Benenson
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引用次数: 25

摘要

集群技术在平面网络上创建层次网络结构,称为集群。相邻设备选择一个合适的设备作为簇头。由于环境是动态的,簇头的选择成为一个重要的问题。研究了无线自组织网络和传感器网络中簇头的合理选择问题。这项工作提出了鲁棒簇头候选选择的拓扑标准,能够适应零星的节点移动和故障,以及有效的信息传播。我们的方法的主要思想之一是避免选择靠近网络分区边界的节点,因为这样的节点更有可能移出分区,从而导致簇头重选。我们对静态拓扑和存在节点移动性的情况进行了实验。我们的结果表明,当考虑拓扑条件时,簇头重选的频率和簇头的平均最短路径长度减少。此外,对于簇头故障,集群往往是健壮的。所提出的机制仅依赖于局部拓扑信息,而不需要地理数据。
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Topology-based Clusterhead Candidate Selection in Wireless Ad-hoc and Sensor Networks
Clustering techniques create hierarchal network structures, called clusters, on an otherwise flat network. Neighboring devices elect one appropriate device as clusterhead. Due to the dynamic environment, clusterhead selection becomes an important issue. We consider the problem of appropriate clusterhead selection in wireless ad-hoc networks and sensor networks. This work presents topological criteria for robust clusterhead candidate selection, resilient to sporadic node mobility and failure as well as for efficient information dissemination. One of the main ideas of our approach is to avoid selecting nodes located close to the network partition border as such nodes are more likely to move out of the partition, thus causing a clusterhead re-election. We conducted experiments both for static topologies as well as for cases in the presence of node mobility. Our results showed that the frequency of clusterhead re-election and average shortest path length from the clusterhead decrease when considering topological criteria. Additionally, the clusters tend to be robust to clusterhead failure. The presented mechanisms rely on local topological information only and do not require geographical data.
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