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Using node position to improve the robustness of the IEEE 802.11s authentication mechanism for wireless mesh networks

机译:使用节点位置来提高无线网状网络的IEEE 802.11s认证机制的鲁棒性

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Wireless Mesh networks (WMNs) are gaining popularity as a scalable replacement for Wired Network infrastructure. The increasing popularity of WMNs has prompted the development of security mechanisms. The newly-ratified IEEE 802.11s mesh networking standard specifies a security mechanism that builds upon the IEEE 802.11i security standard meant for wireless local area networks. The IEEE 802.11s security mechanism specifies the existence of a single Mesh key Distributor (MKD) which helps to authenticate new nodes that join the network However, there is no mechanism for selecting a new MKD if the current MKD is unreachable or has failed. This scenario can arise due to the dynamic nature of WMN backbone topologies, wireless link variability in deployed networks and battery depletion in battery-powered WMNs. MKD selection in a disperse settlement where WMN infrastructure could be deployed can be performed by adapting the position-based Leader Selection Algorithms from Wireless Sensor Networks. This paper evaluates the influence of distance and event position-based leader selection algorithms on MKD selection when subjected to different rounds and network sizes. The evaluation showed that the event-based algorithms (EDC & EECED) outperform the distance-based algorithms (EDBCP & EDBC) in the achieved performance for communication overhead cost, leader selection delay and the energy consumption rate.
机译:无线网状网络(WMNS)正在获得受欢迎程度作为有线网络基础架构的可扩展替代品。 WMN的越来越普及促使安全机制的发展。新批准的IEEE 802.11s网状网络标准规定了一种在IEEE 802.11i安全标准上构建的安全机制,该安全标准适用于无线局域网。 IEEE 802.11S安全机制指定了单个网格密钥分发器(MKD)的存在,有助于验证加入网络的新节点,但如果当前MKD无法访问或失败,则没有用于选择新MKD的机制。由于WMN骨干拓扑的动态性质,部署网络的无线链路可变性和电池供电的WMN中的电池耗尽,这种情况可能会出现这种情况。可以通过调整来自无线传感器网络的基于位置的领导选择算法来部署WMN基础设施的分散沉降中的分散沉降中的MKD选择。本文在经过不同舍历和网络尺寸时评估距离和事件位置的领导算法对MKD选择的影响。评估表明,基于事件的算法(EDC和EECED)优于基于距离的算法(EDBCP&EDBC),以实现通信开销成本,领导选择延迟和能耗率的实现性能。

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