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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Optimal Channel Width Adaptation, Logical Topology Design, and Routing in Wireless Mesh Networks
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Optimal Channel Width Adaptation, Logical Topology Design, and Routing in Wireless Mesh Networks

机译:无线网状网络中的最佳信道宽度自适应,逻辑拓扑设计和路由

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摘要

Radio frequency spectrum is a finite and scarce resource. How to efficiently use the spectrum resource is one of the fundamental issues for multi-radio multi-channel wireless mesh networks. However, past research efforts that attempt to exploit multiple channels always assume channels of fixed predetermined width, which prohibits the further effective use of the spectrum resource. In this paper, we address how to optimally adapt channel width to more efficiently utilize the spectrum in IEEE802.11-based multi-radio multi-channel mesh networks. We mathematically formulate the channel width adaptation, logical topology design, and routing as a joint mixed 0-1 integer linear optimization problem, and we also propose our heuristic assignment algorithm. Simulation results show that our method can significantly improve spectrum use efficiency and network performance.
机译:无线电频谱是一种有限且稀缺的资源。如何有效地使用频谱资源是多无线电多信道无线网状网络的基本问题之一。但是,过去尝试利用多个信道的研究工作总是假设信道具有固定的预定宽度,这阻碍了频谱资源的进一步有效利用。在本文中,我们解决了如何在基于IEEE802.11的多无线电多信道网状网络中最佳地调整信道宽度以更有效地利用频谱。我们在数学上将信道宽度自适应,逻辑拓扑设计和路由公式化为联合混合0-1整数线性优化问题,并且还提出了启发式分配算法。仿真结果表明,该方法可以显着提高频谱利用率和网络性能。

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