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Energy efficiency analysis of aggregation mechanisms in IEEE 802.11n radio-over-fiber-based distributed antenna systems

机译:基于IEEE 802.11n光纤无线电的分布式天线系统中聚合机制的能效分析

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摘要

It is known that distributed antenna systems (DAS) using radio-over-fiber (RoF) links are able to increase coverage and to improve energy efficiency compared to traditional wireless access networks. In this paper, we focus on the energy efficiency of 802.11n RoF DAS architectures and we provide a methodology based on ns-3 to evaluate and optimize energy consumption in those environments. Our results confirm that there exists an optimal number of distributed antennas for a given scenario. Furthermore, we show that aggregation mechanisms included in IEEE 802.11n enable to further improve the energy efficiency in RoF DAS. Finally, we demonstrate that media access control protocol data unit aggregation techniques outperform media access control service data unit aggregation schemes in providing higher end-to-end throughput and a better energy efficiency in IEEE 802.11n RoF DAS.
机译:众所周知,与传统的无线接入网络相比,使用光纤无线电(RoF)链路的分布式天线系统(DAS)能够增加覆盖范围并提高能效。在本文中,我们专注于802.11n RoF DAS架构的能效,并提供了一种基于ns-3的方法来评估和优化这些环境中的能耗。我们的结果证实,对于给定场景,存在最佳数量的分布式天线。此外,我们证明了IEEE 802.11n中包括的聚合机制能够进一步提高RoF DAS的能效。最后,我们证明,在IEEE 802.11n RoF DAS中,媒体访问控制协议数据单元聚合技术在提供更高的端到端吞吐量和更好的能源效率方面,优于媒体访问控制服务数据单元聚合方案。

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