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Interference mitigation in wireless mesh networks through radio co-location aware conflict graphs

机译:通过无线电共址感知冲突图缓解无线网状网络中的干扰

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摘要

Wireless Mesh Networks (WMNs) have evolved into a wireless communication technology of immense interest. But technological advancements in WMNs have inadvertently spawned a plethora of network performance bottlenecks, caused primarily by the rise in prevalent interference. Conflict Graphs are indispensable tools used to theoretically represent and estimate the interference in wireless networks. We propose a generic algorithm to generate conflict graphs which is independent of the underlying interference model. Further, we propose the notion of radio co-location interference, which is caused and experienced by spatially co-located radios in multi-radio multi-channel WMNs. We experimentally validate the concept, and propose a new all-encompassing algorithm to create a radio co-location aware conflict graph. Our novel conflict graph generation algorithm is demonstrated to be significantly superior and more efficient than the conventional approach, through theoretical interference estimates and comprehensive experiments. The results of an extensive set of ns-3 simulations run on the IEEE 802.11g platform strongly indicate that the radio co-location aware conflict graphs are a marked improvement over their conventional counterparts. We also question the use of total interference degree as a reliable metric to predict the performance of a Channel Assignment scheme in a given WMN deployment.
机译:无线网状网络(WMN)已经发展成为人们极为关注的无线通信技术。但是WMN的技术进步无意间产生了过多的网络性能瓶颈,这主要是由普遍干扰的增加引起的。冲突图是必不可少的工具,用于从理论上表示和估计无线网络中的干扰。我们提出了一种通用算法来生成独立于基础干扰模型的冲突图。此外,我们提出了无线电同位干扰的概念,它是由多无线电多信道WMN中的空间同位无线电导致并经历的。我们通过实验验证了这一概念,并提出了一种新的全包算法来创建无线电共址感知冲突图。通过理论上的干扰估计和全面的实验,我们新颖的冲突图生成算法被证明比传统方法优越得多,效率更高。在IEEE 802.11g平台上运行的一组广泛的ns-3仿真结果强烈表明,无线电共址感知冲突图相对于传统冲突图有了显着改进。我们还质疑使用总干扰度作为可靠指标来预测给定WMN部署中信道分配方案的性能。

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