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Energy Efficiency of Multiple Antenna Cellular Networks Considering a Realistic Power Consumption Model

机译:考虑实际功耗模型的多天线蜂窝网络的能量效率

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We analyze the area energy efficiency (AEE) of a cellular network employing spatial multiplexing (SM), maximal ratio transmission and transmit antenna selection (TAS) schemes. Moreover, we consider a realistic power consumption model for small base stations (BSs), which includes the power consumed by the backhaul as well as different interference attenuation levels. Our goal is to maximize the AEE by deploying the optimal number of BSs given some requirements, such as demanded network capacity, amount of interference and employed MIMO scheme. Results show that TAS performs better in terms of AEE when the interference is not fully canceled and for no interference cancellation when the demand for system capacity is lower, while SM becomes more energy efficient when the demanded capacity is higher. Additionally, when the capacity demand and the area to be covered are fixed, we show that although achieving the highest AEE, TAS also demands more small BSs than SM. The system performance in terms of AEE is shown to be strongly dependent on the amount of interference, which in turn depends on the employed interference-mitigation scheme and on the power consumption model.
机译:我们分析了采用空间复用(SM),最大比率传输和发射天线选择(TAS)方案的蜂窝网络的区域能效(AEE)。此外,我们考虑了一个适用于小型基站(BS)的实际功耗模型,其中包括回程所消耗的功率以及不同的干扰衰减水平。我们的目标是在给定某些要求(例如所需的网络容量,干扰量和采用的MIMO方案)的情况下,通过部署最佳数量的BS来最大化AEE。结果表明,当没有完全消除干扰时,TAS在AEE方面表现更好;当对系统容量的需求较低时,TAS在没有干扰消除的情况下;而当需求容量较高时,SM的能效更高。此外,当容量需求和要覆盖的区域固定不变时,我们表明,尽管实现了最高的AEE,但TAS所需要的小型BS也要比SM多。从AEE角度来看,系统性能在很大程度上取决于干扰量,而干扰量又取决于所采用的干扰缓解方案和功耗模型。

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