Hybrid multi-channel multi-radio wireless mesh networks

Yong Ding, Kanthakumar Pongaliur, Li Xiao
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引用次数: 41

Abstract

Many efforts have been devoted to maximizing network throughput in a multi-channel multi-radio wireless mesh network. Current solutions are based on either pure static or pure dynamic channel allocation approaches. In this paper, we propose a hybrid multi-channel multi-radio wireless mesh networking architecture, where each mesh node has both static and dynamic interfaces. We first present an Adaptive Dynamic Channel Allocation protocol (ADCA), which considers optimization for both throughput and delay in the channel assignment. In addition, we also propose an Interference and Congestion Aware Routing protocol (ICAR) in the hybrid network with both static and dynamic links, which balances the channel usage in the network. Compared to previous work, our simulation results show that ADCA reduces the packet delay considerably without degrading the network throughput. Moreover, the hybrid architecture shows much better adaptivity to changing traffic than pure static architecture without dramatic increase in overhead.
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混合多通道多无线电无线网状网络
为了使多信道多无线电无线网状网络的网络吞吐量最大化,人们做了很多努力。目前的解决方案是基于纯静态或纯动态信道分配方法。在本文中,我们提出了一种混合的多通道多无线电无线网状网络架构,其中每个网状节点都有静态和动态接口。我们首先提出了一种自适应动态信道分配协议(ADCA),它考虑了信道分配中吞吐量和延迟的优化。此外,我们还提出了一种具有静态和动态链路的混合网络中的干扰和拥塞感知路由协议(ICAR),以平衡网络中的信道使用。与以往的工作相比,我们的仿真结果表明,在不降低网络吞吐量的情况下,ADCA显著降低了数据包延迟。此外,混合体系结构比纯静态体系结构对变化的流量表现出更好的适应性,而开销不会显著增加。
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