BeaconRider: Opportunistic Sharing of Beacon Air-Time in Densely Deployed WLANs

Hyunjoong Lee, Jung-Jun Kim, Changhee Joo, S. Bahk
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引用次数: 7

Abstract

The explosion of mobile traffic volume has led to dense deployment of IEEE 802.11 WLANs. As a consequence, periodic beacon transmissions can overwhelm the air-time, leading to significant air-time depletion for data transmissions. In this work, we develop an opportunistic air-time sharing scheme, named BeaconRider, that facilitates simultaneous data and beacon transmissions aimed at improving spectrum efficiency in dense network environments. The proposed method works for downlink communication and allows access points (APs) to coordinate with each other in a distributed manner to exploit opportunities provided by the capture effect. Our protocol is backward compatible with legacy 802.11 APs. Through experiments with a prototype implementation using off-the-shelf IEEE 802.11n dongles as well as extensive ns-3 simulation, we show that the proposed method achieves substantial performance gains that increase with the number of APs.
BeaconRider:密集部署无线局域网中信标无线时间的机会共享
移动通信量的爆炸式增长导致IEEE 802.11无线局域网的密集部署。因此,周期性的信标传输可能会占用空中时间,导致数据传输的空中时间明显减少。在这项工作中,我们开发了一种机会性的空中时间共享方案,名为BeaconRider,它促进了数据和信标的同时传输,旨在提高密集网络环境中的频谱效率。所提出的方法适用于下行链路通信,并允许接入点(ap)以分布式方式相互协调,以利用捕获效应提供的机会。我们的协议向后兼容旧的802.11 ap。通过使用现成的IEEE 802.11n加密狗的原型实现实验以及广泛的ns-3模拟,我们表明所提出的方法实现了实质性的性能提升,并且随着ap数量的增加而增加。
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