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Boosting capacity through small cell data offloading: A comparative performance study of LTE femtocells and Wi-Fi

机译:通过小基站数据卸载来提高容量:LTE飞蜂窝和Wi-Fi的比较性能研究

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Due to the significant increase in mobile data traffic volume during the last few years, offloading techniques have been considered for alleviating the traffic load from cellular networks. Two principal small cell offloading solutions are LTE femtocells and Wi-Fi. Femtocells are low power user-deployed LTE base stations that overlay the macro-cellular network and share its licensed spectrum, whereas Wi-Fi devices operate in unlicensed bands using the distributed CSMA/CA MAC protocol to coordinate neighbouring transmissions. Given the fundamentally different spectrum use regulations, MAC, and PHY layer capabilities of these two technologies, the resulting interference environments of the respective small cell networks are significantly different. It is thus not trivially obvious which offloading solution realistically provides a better and future-proof capacity extension for service providers. In this paper we present a thorough system-level comparative study of IEEE 802.1 In Wi-Fi against LTE femtocell performance for a range of representative network densities and deployment scenarios, considering realistic propagation effects, multiple interference sources, and several resource allocation schemes. Our results show that in low density suburban and rural scenarios the high spectral efficiency of LTE femtocells yields a higher throughput than Wi-Fi, but that the CSMA/CA MAC protocol enables Wi-Fi to outperform LTE femtocells in dense urban scenarios, where the need for extra capacity is most urgent. We show that future high density heterogeneous networks may be best served by a new hybrid small cell offloading solution, combining the superior PHY of LTE and the distributed co-tier interference coordination afforded by the MAC of Wi-Fi.
机译:由于在最近几年中移动数据业务量的显着增加,已经考虑了卸载技术来减轻来自蜂窝网络的业务负载。两种主要的小型小区卸载解决方案是LTE飞蜂窝和Wi-Fi。毫微微小区是覆盖宏蜂窝网络并共享其许可频谱的低功耗用户部署LTE基站,而Wi-Fi设备使用分布式CSMA / CA MAC协议在非许可频段中运行,以协调相邻传输。考虑到这两种技术的频谱使用规定,MAC和PHY层功能根本不同,因此相应的小蜂窝网络产生的干扰环境也将大大不同。因此,哪一个卸载解决方案实际上为服务提供商提供了更好的,面向未来的容量扩展并不是显而易见的。在本文中,我们考虑了实际的传播效果,多种干扰源和几种资源分配方案,针对一系列代表性网络密度和部署场景,针对Wi-Fi的IEEE 802.1 In Wi-Fi对LTE飞蜂窝性能进行了全面的系统级比较研究。我们的结果表明,在低密度的郊区和农村场景中,LTE飞蜂窝的频谱效率高,比Wi-Fi产生更高的吞吐量,但是CSMA / CA MAC协议使Wi-Fi在密集的城市场景中胜过LTE飞蜂窝。最需要额外的容量。我们表明,结合LTE的出色PHY和Wi-Fi MAC提供的分布式共层干扰协调功能,新的混合小型小区卸载解决方案可能会更好地服务于未来的高密度异构网络。

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