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Load-aware channel selection for 802.11 WLANs with limited measurement

机译:具有有限测量的802.11 WLaN的负载感知信道选择

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摘要

It has been known that load unaware channel selection in 802.11 networks results in high level interference, and can significantly reduce the network throughput. In current implementation, the only way to determine the traffic load on a channel is to measure that channel for a certain duration of time. Therefore, in order to find the best channel with the minimum load all channels have to be measured, which is costly and can cause unacceptable communication interruptions between the AP and the stations. In this paper, we propose a learning based approach which aims to find the channel with the minimum load by measuring only limited number of channels. Our method uses Gaussian Process Regressing to accurately track the traffic load on each channel based on the previous measured load. We confirm the performance of our algorithm by using experimental data, and show that the time consumed for the load measurement can be reduced up to 46% compared to the case where all channels are monitored.
机译:众所周知,在802.11网络中选择无负载信道会导致高水平的干扰,并且会大大降低网络吞吐量。在当前的实现中,确定信道上的业务负载的唯一方法是在特定持续时间内测量该信道。因此,为了找到具有最小负载的最佳信道,必须测量所有信道,这是昂贵的,并且可能导致AP与站点之间的通信中断。在本文中,我们提出了一种基于学习的方法,旨在通过仅测量有限数量的信道来找到负载最小的信道。我们的方法使用高斯过程回归来基于先前测得的负载准确跟踪每个通道上的流量负载。我们通过实验数据确认了算法的性能,并表明与监控所有通道的情况相比,负载测量所花费的时间最多可减少46%。

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