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A new access point selection policy for multi-rate IEEE 802.11 WLANs

机译:多速率IEEE 802.11 WLAN的新接入点选择策略

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In wireless local area networks, often a station can potentially associate with more than one access point (AP). Therefore, a relevant question is which AP to select 'best' from a list of candidate ones. In IEEE 802.11, the user simply associates to the AP with the strongest received signal strength. However, this may result in a significant load imbalance between several APs. Moreover, the multi-rate flexibility provided by several IEEE 802.11 variants can cause low bit rate stations to negatively affect high bit rate ones and consequently degrade the overall network throughput. This paper investigates the various aspects of 'best' AP selection for IEEE 802.11 systems. In detail, we first derive a new decision metric which can be used for AP selection. Using this metric, we propose two new selection mechanisms which are decentralised in the sense that the decision is performed by each station, given appropriate status information of each AP. In fact, only few bytes of status information have to be added to the Beacon and Probe Response frames which does not impose significant overhead. We show that our mechanism improves mean quality of service of all stations and better utilises network resources compared to the conventional one implemented today in IEEE 802.11 devices. Also, the schemes are appealing in terms of stability and provide their performance improvement even for denser or lighter network configurations.
机译:在无线局域网中,站点通常可能与一个以上的接入点(AP)关联。因此,一个相关的问题是哪个AP从候选列表中选择“最佳”。在IEEE 802.11中,用户只需关联到具有最强接收信号强度的AP。但是,这可能会导致多个AP之间出现明显的负载不平衡。此外,几种IEEE 802.11变体提供的多速率灵活性可能导致低比特率站对高比特率站产生负面影响,从而降低整体网络吞吐量。本文研究了IEEE 802.11系统“最佳” AP选择的各个方面。详细地,我们首先导出可用于AP选择的新决策度量。使用该度量,我们提出了两种新的选择机制,它们在给定每个AP适当的状态信息的情况下由每个站执行决策的意义上分散。实际上,只需要向信标和探测响应帧添加少量字节的状态信息,这不会带来很大的开销。我们证明,与今天在IEEE 802.11设备中实现的常规机制相比,我们的机制提高了所有站点的平均服务质量并更好地利用了网络资源。而且,这些方案在稳定性方面很有吸引力,即使对于更密集或更轻的网络配置,也可以提供其性能改进。

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