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Saving Energy during Channel Contention in 802.11 WLANs

机译:802.11 WLAN中的信道争用期间节省能源

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摘要

We focus on energy saving in 802.11-based WLANs. Previous work has shown that, on the one hand, 802.11 wireless interfaces consume a significant amount of energy, on the other hand the use of current power management schemes can severely degrade the QoS performance of several Internet-based applications. Furthermore, the energy spent by wireless devices may even increase when the standard 802.11 power-saving mode (PSM) is implemented. These facts suggest that other solutions to energy saving are highly needed. In this paper, we consider the 802.11 distributed access scheme and we propose a novel approach that enables a station to enter a low-power operational state during channel contention. More specifically, our technique exploits the virtual carrier sense mechanism and the backoff function specified in the IEEE 802.11 DCF, so that a station can dramatically reduce its energy consumption without significant degradation of the QoS performance. To efficiently implement our mechanism, a low-power state with negligible transition time into the active state must be identified. This can be any of the non-standard, low-power states defined by proprietary solutions in the current or next-generation products [7,15,22]. By using the network simulator ns2, we evaluate the performance improvement that is obtained when the proposed mechanism is implemented, against the results attained through the standard DCF. The results show that we can achieve a reduction in energy consumption as large as 80% and 28% under, respectively, UDP and TCP traffic.
机译:我们专注于基于802.11的WLAN的节能。先前的工作表明,一方面,802.11无线接口消耗大量能量,另一方面,使用当前的电源管理方案会严重降低几种基于Internet的应用程序的QoS性能。此外,当实施标准802.11省电模式(PSM)时,无线设备花费的能量甚至可能增加。这些事实表明,迫切需要其他节能解决方案。在本文中,我们考虑了802.11分布式访问方案,并提出了一种新颖的方法,该方法可使站点在信道竞争期间进入低功率工作状态。更具体地说,我们的技术利用了IEEE 802.11 DCF中指定的虚拟载波侦听机制和退避功能,因此站点可以显着降低其能耗,而不会显着降低QoS性能。为了有效地实现我们的机制,必须确定进入激活状态的过渡时间可以忽略的低功耗状态。这可以是当前或下一代产品中专有解决方案定义的任何非标准,低功耗状态[7,15,22]。通过使用网络模拟器ns2,我们将评估通过标准DCF获得的结果,在实施所提出的机制时所获得的性能改进。结果表明,在UDP和TCP流量下,我们可以分别减少80%和28%的能耗。

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