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On the Energy Efficiency-Spectral Efficiency Trade-Off of Distributed MIMO Systems

机译:分布式MIMO系统的能效-谱效率折衷

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In this paper, the trade-off between energy efficiency (EE) and spectral efficiency (SE) is analyzed for both the uplink and downlink of the distributed multiple-input multiple-output (DMIMO) system over the Rayleigh fading channel while considering different types of power consumption models (PCMs). A novel tight closed-form approximation of the DMIMO EE-SE trade-off is presented and a detailed analysis is provided for the scenario with practical antenna configurations. Furthermore, generic and accurate low and high-SE approximations of this trade-off are derived for any number of radio access units (RAUs) in both the uplink and downlink channels. Our expressions have been utilized for assessing both the EE gain of DMIMO over co-located MIMO (CMIMO) and the incremental EE gain of DMIMO in the downlink channel. Our results reveal that DMIMO is more energy efficient than CMIMO for cell edge users in both the idealistic and realistic PCMs; whereas in terms of the incremental EE gain, connecting the user terminal to only one RAU is the most energy efficient approach when a realistic PCM is considered.
机译:本文分析了瑞利衰落信道上分布式多输入多输出(DMIMO)系统的上行链路和下行链路的能量效率(EE)和频谱效率(SE)之间的权衡,同时考虑了不同类型功耗模型(PCM)。提出了DMIMO EE-SE折衷方案的新颖的紧闭形式近似,并针对具有实际天线配置的场景提供了详细的分析。此外,针对上行链路和下行链路信道中的任意数量的无线接入单元(RAU),都可以得出此折衷的通用且准确的低SE和高SE近似值。我们的表达式已被用于评估共置MIMO(CMIMO)上DMIMO的EE增益和下行链路信道中DMIMO的增量EE增益。我们的结果表明,对于理想边缘和实际PCM而言,对于小区边缘用户而言,DMIMO比CMIMO更加节能。而就增加的EE增益而言,考虑到实际的PCM,将用户终端仅连接到一个RAU是最节能的方法。

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