OMAC: An Opportunistic Medium Access Control Protocol for IEEE 802.11 Wireless Networks

Antonio Franco, S. Bastani, Emma Fitzgerald, B. Landfeldt
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引用次数: 2

Abstract

The ambitious goal of the upcoming IEEE 802.11ax (HEW) standard for wireless LANs (WLANs) to enhance throughput by four times (and beyond), compared with IEEE 802.11ac, demands a radical improvement of present medium access control (MAC) functionality. To this end, a promising paradigm would be a graceful migration towards new MAC protocols which incorporate higher certainty in their decisions. However, this requires adequate information to be available to the devices, which in turn incurs excessive costs due to information exchange between devices. Also, scalability becomes an issue for emerging dense networks. In this paper, we take a step forward by proposing an opportunistic MAC (OMAC), which restrains these costs, while increasing throughput of the new generation HEW. OMAC eliminates overhead costs by solely relying on the local capability of devices in measuring signal activities in the channel. A particular OMAC node continually collects and records the received signal strengths (RSS) overheard from the channel, and regards each individual RSS level as being transmitted by a unique node without the need to know the actual identity of the node. The OMAC node uses this knowledge to select a recorded RSS as its reference, and triggers a desired transmission policy whenever a transmission with an RSS sufficiently close to this reference RSS is detected. Our results, obtained using simulations, indicate that OMAC improves the throughput performance significantly, and that the performance gain increases with an increase in network density.
OMAC: IEEE 802.11无线网络的机会介质访问控制协议
与IEEE 802.11ac相比,即将推出的IEEE 802.11ax (HEW)无线局域网(wlan)标准的雄心勃勃的目标是将吞吐量提高四倍(甚至更多),这要求从根本上改进现有的介质访问控制(MAC)功能。为此,一个有希望的范例将是向新的MAC协议的优雅迁移,该协议在其决策中包含更高的确定性。然而,这需要足够的信息提供给设备,这反过来又由于设备之间的信息交换而产生了过高的成本。此外,可扩展性成为新兴密集网络的一个问题。在本文中,我们进一步提出了一种机会主义MAC (OMAC),它在限制这些成本的同时增加了新一代HEW的吞吐量。OMAC仅依靠设备的本地能力来测量信道中的信号活动,从而消除了间接成本。特定的OMAC节点不断地收集和记录从信道中截取的接收信号强度(RSS),并将每个单独的RSS级别视为由唯一的节点传输,而无需知道节点的实际身份。OMAC节点使用这些信息来选择记录的RSS作为其参考,并在检测到与该参考RSS非常接近的RSS传输时触发所需的传输策略。我们通过模拟得到的结果表明,OMAC显著提高了吞吐量性能,并且性能增益随着网络密度的增加而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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