Evaluation of the IEEE 802.11ah Restricted Access Window mechanism for dense IoT networks

L. Tian, J. Famaey, Steven Latré
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引用次数: 111

Abstract

IEEE 802.11ah is a new Wi-Fi draft for sub-1Ghz communications, aiming to address the major challenges of the Internet of Things (IoT): connectivity among a large number of power-constrained stations deployed over a wide area. The new Restricted Access Window (RAW) mechanism promises to increase throughput and energy efficiency by dividing stations into different RAW groups. Only the stations in the same group can access the channel simultaneously, which reduces collision probability in dense scenarios. However, the draft does not specify any RAW grouping algorithms, while the grouping strategy is expected to severely impact RAW performance. To study the impact of parameters such as traffic load, number of stations and RAW group duration on optimal number of RAW groups, we implemented a sub-1Ghz PHY model and the 802.11ah MAC protocol in ns-3 to evaluate its transmission range, throughput, latency and energy efficiency in dense IoT network scenarios. The simulation shows that, with appropriate grouping, the RAW mechanism substantially improves throughput, latency and energy efficiency. Furthermore, the results suggest that the optimal grouping strategy depends on many parameters, and intelligent RAW group adaptation is necessary to maximize performance under dynamic conditions. This paper provides a major leap towards such a strategy.
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面向密集物联网网络的IEEE 802.11ah限制访问窗口机制评估
IEEE 802.11ah是针对低于1ghz通信的新Wi-Fi草案,旨在解决物联网(IoT)的主要挑战:在广泛区域内部署的大量功率受限的站点之间的连接。新的限制访问窗口(RAW)机制承诺通过将站点划分为不同的RAW组来提高吞吐量和能源效率。只有同一组的站点才能同时进入信道,从而降低了密集场景下的碰撞概率。然而,草案并没有指定任何RAW分组算法,而分组策略预计会严重影响RAW性能。为了研究流量负载、站点数量和RAW组持续时间等参数对最优RAW组数量的影响,我们在ns-3中实现了一个低于1ghz的PHY模型和802.11ah MAC协议,以评估其在密集物联网网络场景下的传输范围、吞吐量、延迟和能效。仿真结果表明,通过适当的分组,RAW机制大大提高了吞吐量、延迟和能量效率。此外,研究结果表明,最优分组策略取决于许多参数,在动态条件下,智能分组适应是实现性能最大化的必要条件。本文为实现这一战略提供了一个重大飞跃。
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