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Dynamic switching with heterogeneous channels in multichannel 802.11 WLANs

机译:在多通道802.11 WLAN中使用异构通道进行动态切换

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In a multichannel wireless system, the performance of a link depends on many factors. The link quality is subject to temporal, spatial and spectral diversity, i.e. the SNR is time varying, link-dependent and channel-dependent. In addition, the performance also depends on MAC dynamics and the degree of congestion present in the channel. As a result, different links can experience different performance on the same channel, and the performance of a link varies across channels and time. An effective way to exploit and cope with the diversity in the wireless system is to use opportunistic channel switching. This technique allows a link to dynamically search for a channel/spectrum where it can maximize its performance at a given point of time. In addition, we observe that the link diversity can make it beneficial to have channels configured with different PHY/MAC parameters (e.g. different transmit power, data rates, or carrier sensing threshold). We refer to these as heterogeneous channels. A group of links may perform better under a set of parameters while a different group may perform better under a different set. In this paper we combine an opportunistic channel switching scheme with heterogeneous channels in multichannel Wireless LANs (WLANs) and show that the combined approach is effective in increasing link throughput and fairness.
机译:在多通道无线系统中,链接的性能取决于许多因素。链路质量受时间,空间和频谱分集的影响,即SNR随时间变化,与链路有关和与信道有关。此外,性能还取决于MAC动态和信道中存在的拥塞程度。结果,不同的链接可以在同一通道上体验不同的性能,并且链接的性能在不同的通道和时间上会有所不同。开发和应对无线系统多样性的一种有效方法是使用机会信道切换。此技术允许链接动态搜索信道/频谱,从而可以在给定的时间点最大化其性能。另外,我们观察到,链路分集可以使配置了不同PHY / MAC参数(例如,不同的发射功率,数据速率或载波侦听阈值)的信道受益。我们称这些为异构渠道。一组链接可能在一组参数下表现更好,而另一组可能在另一组参数下表现更好。在本文中,我们将机会信道切换方案与多信道无线LAN(WLAN)中的异构信道相结合,并表明该组合方法可有效提高链路吞吐量和公平性。

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