Exploiting super peers for large-scale peer-to-peer Wi-Fi roaming

Efstratios G. Dimopoulos, P. A. Frangoudis, George C. Polyzos
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引用次数: 1

Abstract

With the low installation and maintenance cost of IEEE 802.11-based equipment, dense Wi-Fi deployments are a reality, especially in today's urban areas. This vast number of WLANs can be exploited to achieve low-cost ubiquitous wireless Internet access, which is also demostrated by the emergence of community-based wireless access schemes. In our prior work we have developed a reciprocity-based peer-to-peer architecture for Wi-Fi sharing, where peers provide free Wi-Fi access to others in order to enjoy the same benefit when they are away from their own Wi-Fi network. Our system tries to match peer consumption with contribution and we have shown it to work well for city-scale Wi-Fi sharing communities. However, when attempting to roam outside the city boundaries, the statistics are such that there is typically a lack of consumption-contribution information between consuming and providing members, which hinders the system's scalability. In this work, we extend our architecture with global-scale roaming capabilities by relaxing the requirement for full decentralization. In particular, we exploit special trusted super-peers which act as representatives of different Wi-Fi sharing communities (e.g., communities of different geographical regions) and which mediate transactions when there is insufficient information about peer contribution history. Extensive simulations show that this super-peer-assisted approach can significantly enhance the system's performance in terms of roaming coverage.
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利用超级对等体实现大规模点对点Wi-Fi漫游
由于基于IEEE 802.11的设备的安装和维护成本较低,密集的Wi-Fi部署已经成为现实,尤其是在当今的城市地区。大量的无线局域网可以被用来实现低成本的无所不在的无线互联网接入,基于社区的无线接入方案的出现也证明了这一点。在我们之前的工作中,我们已经为Wi-Fi共享开发了一种基于互惠的点对点架构,其中点对点为其他人提供免费的Wi-Fi接入,以便在他们远离自己的Wi-Fi网络时享受同样的好处。我们的系统试图将对等消费与贡献相匹配,我们已经证明它在城市规模的Wi-Fi共享社区中运行良好。然而,当试图在城市边界之外漫游时,统计数据通常会导致消费成员和提供成员之间缺乏消费-贡献信息,这阻碍了系统的可扩展性。在这项工作中,我们通过放松对完全去中心化的要求,扩展了具有全球规模漫游功能的架构。特别是,我们利用了特殊的可信超级对等体,它们作为不同Wi-Fi共享社区(例如,不同地理区域的社区)的代表,并在对等体贡献历史信息不足时调解交易。大量的仿真表明,这种超级对等辅助方法可以显著提高系统在漫游覆盖方面的性能。
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