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Energy Efficiency in the Phantom Cell enhanced Local Area architecture

机译:Phantom Cell增强的本地架构中的能源效率

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The Third Generation Partnership Project (3GPP) is presently standardizing Enhanced Local Area (eLA) small-cell heterogeneous architectures for inclusion in Long Term Evolution (LTE) Release 12 as a solution offering high data rate to user terminals (UEs) along with high system capacity through spatial reuse of spectrum. At the same time, Energy Efficiency (EE) is becoming an important metric in evaluating the next generation of small cell networks. In this paper, we focus on a particular eLA architecture proposed by DOCOMO, called the Phantom Cell architecture. We use results from stochastic geometry to compare the EE of the phantom cell architecture versus the baseline small cell network, defined as a conventional frequency division duplex (FDD) LTE pico-cell deployment that uses the same spectrum as the underlying macrocellular network.
机译:第三代合作伙伴计划(3GPP)当前正在标准化增强型局域网(eLA)小小区异构架构,以将其包含在长期演进(LTE)版本12中,作为向用户终端(UE)提供高数据速率以及高系统的解决方案通过频谱的空间重用获得最大容量。同时,能源效率(EE)成为评估下一代小型蜂窝网络的重要指标。在本文中,我们重点介绍由DOCOMO提出的一种特殊的eLA体系结构,称为Phantom Cell体系结构。我们使用随机几何的结果来比较幻像蜂窝架构的EE与基线小蜂窝网络,该基线定义为使用与底层宏蜂窝网络相同频谱的常规频分双工(FDD)LTE微微小区部署。

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