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Joint Channel Assignment and Space-Division Multiple Access Scheduling in Wireless Mesh Networks

机译:无线网状网络中的联合信道分配和空分多址调度

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In recent years, wireless mesh networks (WMNs) have been widely deployed to provide wireless access to the Internet. However, due to inter-link interference, the aggregated capacity of WMNs is limited, even with multiple channels. As a result, many links in WMNs are suppressed since interfering links cannot be active (i.e., transmitting packets) simultaneously. In this paper, we propose a joint design of channel assignment and space-division multiple access (SDMA) technique with the objective of maximizing the number of active links in WMNs. We assign different channels to transmission links based on their interference relationship to alleviate the interference. We also apply the SDMA technique to link scheduling, which enables two interfering links that share the same destination to communicate simultaneously on the same channel. By utilizing SDMA, more concurrent transmission links can be accommodated such that the network capacity can be greatly improved. We formulate this joint design into an optimization problem, prove its NP-hardness and then provide two heuristic algorithms to give practically good solutions to the problem. %David update begin Our simulation results demonstrate that when 90% SDMA pairs are compatible, the proposed algorithms can increase the percentage of active links in a WMN by up to 40% as compared to non-SDMA schedules.
机译:近年来,无线网状网络(WMN)已被广泛部署以提供对Internet的无线访问。但是,由于链路间干扰,即使具有多个信道,WMN的聚合容量也受到限制。结果,由于干扰链路不能同时活动(即,发送分组),因此抑制了WMN中的许多链路。在本文中,我们提出了一种信道分配和空分多址(SDMA)技术的联合设计,目的是最大化WMN中的活动链路数量。我们基于它们的干扰关系为传输链路分配不同的信道,以减轻干扰。我们还将SDMA技术应用于链路调度,它使共享同一目的地的两条干扰链路能够在同一信道上同时通信。通过利用SDMA,可以容纳更多的并发传输链路,从而可以大大提高网络容量。我们将此联合设计公式化为一个优化问题,证明其NP硬度,然后提供两种启发式算法为该问题提供实用的解决方案。 %David更新开始我们的仿真结果表明,与90%的SDMA对兼容时,与非SDMA计划相比,所提出的算法可以将WMN中的活动链路百分比提高40%。

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