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A Learning-based Approach for Distributed Multi-Radio Channel Allocation in Wireless Mesh Networks

机译:一种基于学习的无线网状网络中分布式多无线电信道分配方法

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We consider the distributed channel allocation problem in IEEE 802.11-based multi-radio wireless mesh networks. We develop a new scalable protocol termed LCAP for efficient and adaptive distributed multi-radio channel allocation. In LCAP, nodes autonomously learn their channel allocation based on neighborhood and channel usage information, which is obtained via a novel neighbor discovery protocol that enables neighboring nodes to efficiently discover each other even when they do not share a common channel. Extensive simulation-based evaluation of LCAP relative to the state-of-the-art Asynchronous Distributed Coloring (ADC) protocol demonstrates that LCAP is able to achieve its stated objectives of efficient channel utilization across diverse traffic patterns, protocol scalability and adaptivity to factors such as external interference. We also present a prototype implementation of the LCAP neighbor discovery module that is key to implementing the proposed approach.
机译:我们考虑基于IEEE 802.11的多无线无线网状网络的分布式信道分配问题。我们开发了一种称为LCAP的新可扩展协议,以实现高效和自适应分布式多无线电信道分配。在LCAP中,节点基于通过新颖的邻居发现协议获得的基于邻域和信道使用信息来自主地学习它们的信道分配,其使得即使当它们不共享公共信道时,也能够有效地发现彼此。相对于最先进的异步分布式着色(ADC)协议的广泛模拟基于LCAP评估演示了LCAP能够通过各种流量模式,协议可伸缩性和适应性实现其有效信道利用率的所述有效渠道利用的目标作为外部干扰。我们还提供了LCAP邻居发现模块的原型实现,该模块是实现所提出的方法的关键。

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