Achilles and the tortoise: Power consumption in IEEE 802.11n and IEEE 802.11g networks

K. Gomez, T. Rasheed, R. Riggio, D. Miorandi, C. Sengul, N. Bayer
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引用次数: 11

Abstract

Cloud computing is currently emerging as the de facto standard for Internet service provisioning. This uptake is motivated, among other aspects, by the significant reduction in energy consumption that can be achieved by centralizing, consolidating and optimizing large IT infrastructures. At the same time, however, users expect to access cloud services via wireless access networks using smartphones and tablets. Several studies already show that wireless technologies such as WiFi and 4G are becoming the dominant access to cloud services. However, while energy efficiency is accounted for the end-user devices and data-centers, the actual energy consumption of wireless access networks is typically overlooked, even though it is expected to account for about 90 % of the entire wireless cloud energy footprint. In this paper, we use real-world measurements to present a complete analysis of the power consumption and performance of IEEE 802.11n. We also compare IEEE 802.11n with its predecessor, the widely deployed IEEE 802.11g standard, and confirm that 802.11n (2×2 MIMO) performs ~ 4.5 times better than 802.11g in terms of maximum network throughput as expected while at the same time reducing the required energy per bit by ~ 50%.
阿基里斯和乌龟:IEEE 802.11n和IEEE 802.11g网络中的功耗
云计算目前正在成为互联网服务供应的事实上的标准。除其他方面外,通过集中、整合和优化大型IT基础设施可以显著减少能源消耗。然而,与此同时,用户希望使用智能手机和平板电脑通过无线接入网络访问云服务。几项研究已经表明,WiFi和4G等无线技术正在成为云服务的主要接入方式。然而,虽然最终用户设备和数据中心的能源效率被考虑在内,但无线接入网络的实际能源消耗通常被忽视,尽管预计它将占整个无线云能源足迹的90%左右。在本文中,我们使用真实世界的测量来提供IEEE 802.11n的功耗和性能的完整分析。我们还将IEEE 802.11n与其前身,广泛部署的IEEE 802.11g标准进行了比较,并确认802.11n (2×2 MIMO)在最大网络吞吐量方面的性能比802.11g好4.5倍,同时将每比特所需的能量降低了约50%。
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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