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Minimizing non-coordinated interference in multi-radio multi-channel Wireless Mesh Networks (MRMC-WMNs)

机译:最小化多无线电多通道无线网状网络(MRMC-WMN)的非协调干扰

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Multi-radio Multi-channel (MRMC) Wireless Mesh Networks (WMNs) have made rapid progress in recent years to become a preferred option for end users due to its reliability, scalability and extending the network connectivity on the last mile. Although WMNs have already been deployed but still the capacity of WMNs is limited due to non-coordinated interference (nCO) among channels. To minimize non-coordinated interference among channels and maximize network capacity; channel assignment has always been a key issue in WMNs. In this paper, we propose an optimization model that maximizes network capacity and minimizes non-coordinated interference using nonoverlapping channel assignment in MRMC-WMNs by giving an optimized channel assignment strategy. Through extensive simulation we compare channel assignment results in both sparse and dense MRMC-WMN topologies. In sparse environments, where the non-coordinated interference is high, our proposed model performs 19% better than dense network environments.
机译:多无线电多通道(MRMC)无线网状网络(WMNS)在近年来成为最终用户的首选选择,因为它的可靠性,可扩展性和在最后一英里扩展了网络连接。虽然WMN已经部署但仍然仍然存在WMNS的容量由于频道之间的非协调干扰(NCO)而受到限制。最大限度地减少频道之间的非协调干扰,并最大限度地提高网络容量;通道分配始终是WMNS中的关键问题。在本文中,我们提出了一种优化模型,通过提供优化的信道分配策略,最大限度地利用MRMC-WMN中的非协调干扰最大限度地减少非协调干扰。通过广泛的仿真,我们比较通道分配导致稀疏和密集的MRMC-WMN拓扑。在稀疏环境中,在非协调干扰很高的情况下,我们的提出模型比密集的网络环境更好地执行19%。

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