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Dynamic Channel Assignment in IEEE 802.11 Networks

机译:IEEE 802.11网络中的动态信道分配

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We design a dynamic channel assignment algorithm for IEEE 802.11 wireless networks. Our algorithm assigns channels dynamically in a way that minimizes channel interference generated by neighboring access points (APs) on a reference access point, resulting in higher throughput. We implement and simulate our algorithm using two versions (I: pick rand and II: pick first) and different number of APs (4, 9, 16, and 25). Analysis of our algorithm shows an improvement by a factor of 4 (by lowering the total interference on an AP by 6 dBm on average) over default settings of having all APs use the same channel. As the number of APs is increased in a given service area, dynamic channel assignment becomes crucial; otherwise overlapping channel interference becomes a limiting factor.
机译:我们为IEEE 802.11无线网络设计动态信道分配算法。我们的算法以一种最小化参考接入点上的相邻接入点(AP)产生的信道干扰来动态分配通道,从而导致较高的吞吐量。我们使用两个版本(i:pick rand和ii:pick fight)和不同数量的ap(4,9,16和25)来实现和模拟我们的算法。对我们的算法的分析显示,通过将所有AP使用相同通道的默认设置将AP的总干扰降低6 dBm,通过将AP上的总干扰降低到6 dBm,通过所有AP使用相同的通道。随着在给定的服务区域的AP的数量增加,动态信道分配变得至关重要;否则重叠的信道干扰成为限制因素。

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