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Joint resource allocation in multi-radio multi-channel wireless mesh networks with practical sectored antennas

机译:带有实用扇区天线的多无线电多信道无线网状网络中的联合资源分配

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The aggregate capacity of wireless mesh networks is severely affected by interflow interference. Directional antennas and multiple channels are two well known techniques which can be applied to mitigate interflow interference. In this work, a network architecture is proposed to incorporate directional antennas with multiple orthogonal channels effectively to enhance the performance of wireless mesh networks. We first introduce a sectored connectivity graph to model multi-radio multi-channel wireless mesh networks with directional antennas. We then proceed to formulate the topology design, directional interface assignment, channel allocation and routing mathematically as a mixed integer programming problem. This problem is solved using an iterated local search algorithm to obtain optimized resource allocation in the network. Simulation results indicate that the proposed architecture can achieve higher packet delivery ratio. It also provides better fairness among the flows in the network by proper resource allocation, load balancing and capacity planning.
机译:无线网状网络的总容量受到流间干扰的严重影响。定向天线和多信道是两种众所周知的技术,可以用来减轻流间干扰。在这项工作中,提出了一种网络架构,将定向天线与多个正交信道有效地结合在一起,以增强无线网状网络的性能。我们首先介绍一个扇形连接图,以对带有定向天线的多无线电多通道无线网状网络进行建模。然后,我们将数学上的拓扑设计,定向接口分配,通道分配和路由公式化为混合整数规划问题。使用迭代的本地搜索算法来解决此问题,以获得网络中的优化资源分配。仿真结果表明,所提出的体系结构可以实现更高的分组传输率。通过适当的资源分配,负载平衡和容量规划,还可以在网络流之间提供更好的公平性。

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