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Energy Efficiency Analysis of Two-Tier MIMO Diversity Schemes in Poisson Cellular Networks

机译:泊松蜂窝网络中两层MIMO分集方案的能效分析

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In this paper, the energy efficiency (EE) of different MIMO diversity schemes is analyzed for the downlink of a two-tier network consisting of both macro- and femto-cells. The locations of the base stations (BSs) in both tiers are modeled by spatial Poisson point processes (PPPs). The EE of the system in b/J/Hz is obtained for different antenna configurations under various diversity schemes. Adaptive modulation is employed to maximize both the throughput and the EE across both tiers. Borrowing well established tools from stochastic geometry, we obtain closed-form expressions for the coverage, throughput, and power consumption for a two tier rate adaptive cellular network. Building on the developed analytical framework, we formulate the resource allocation problem for each diversity scheme with the aim of maximizing the network-wide EE while satisfying a minimum QoS in each tier. We consider that both the number of antennas and the spectrum allocated to each tier constitute the network resource which must be efficiently selected for both tiers to maximize network-wide performance. The best performance in terms of the EE is provided by the schemes which strike a good balance between the achievable maximum throughput and the consumed power (both increasing with the number of RF chains used). In addition, the potential savings in EE by using femto-cells with sleeping mode capabilities are analyzed. It is observed that, when the density of active co-channel femto-cells exceeds a certain threshold, the EE of the system can be significantly improved by sleep scheduling.
机译:本文针对由宏小区和毫微微小区组成的两层网络的下行链路,分析了不同MIMO分集方案的能效(EE)。通过空间泊松点过程(PPP)对两层基站(BS)的位置进行建模。在各种分集方案下,针对不同的天线配置获得了以b / J / Hz为单位的系统EE。采用自适应调制来最大化两层的吞吐量和EE。从随机几何学中借用成熟的工具,我们获得了两层速率自适应蜂窝网络的覆盖率,吞吐量和功耗的封闭式表达式。在已开发的分析框架的基础上,我们针对每种多样性方案制定资源分配问题,以最大化网络范围的EE,同时满足每一层的最低QoS。我们认为,分配给每一层的天线数量和频谱都构成了网络资源,必须为两层有效地选择网络资源,以最大化网络范围的性能。这些方案在EE方面提供了最佳性能,这些方案在可实现的最大吞吐量和功耗(两者均随所用RF链数量的增加)之间取得了良好的平衡。此外,还分析了通过使用具有睡眠模式功能的毫微微小区节省的EE。可以看到,当活动同频道毫微微小区的密度超过某个阈值时,可以通过睡眠调度来显着提高系统的EE。

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