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Autonomic Formation of Large-Scale Wireless Mesh Networks

机译:大规模无线网状网络的自主形成

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Real-world deployments of low-cost, peer-to-peer Wireless Mesh Networks (WMNs) for communication in under-served settings are hampered by low throughput capacity and high complexity of network control. We present a design of autonomic agents that manipulate the formation of WMN topologies by organizing a node placement into dynamic network partitions while enforcing inter-partition connectivity to promote the WMNs' capacity through density control, increased frequency diversity and multi-domain SDN-based control. We show that our competing Self-Organizing and Self-Healing agents achieve fast convergence to stable partition sets and global re-connectivity, relying on local information. Moreover, the design achieves global inter-partition connectivity with less than 20% of healing agents on nodes, converging under extreme node churn conditions. The design is robust to the average node placement density, producing partitions isolated at the physical and link layers with the properties of bounded diameter and node degree, and elected partition control node to act as an SDN domain controller.
机译:低吞吐量,网络控制的复杂性阻碍了低成本,点对点无线网状网络(WMN)在服务不足环境中进行通信的实际部署。我们提出了一种自主代理程序,该代理程序通过将节点放置在动态网络分区中,同时加强分区间的连接性来操纵WMN拓扑的形成,从而通过密度控制,增加的频率多样性和基于多域SDN的控制来提升WMN的容量。我们证明了,我们竞争的自组织代理和自修复代理依靠本地信息可以快速收敛到稳定的分区集和全局重新连接。此外,该设计通过节点上少于20%的恢复代理实现了全局分区间连接,并且在极端节点搅动条件下收敛。该设计对平均节点放置密度具有鲁棒性,可以在物理层和链路层隔离隔离的分区,并具有有限的直径和节点度的属性,并可以选择分区控制节点充当SDN域控制器。

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