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Spectral and energy efficiency analysis with massive MIMO systems

机译:大规模MIMO系统的频谱和能效分析

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Massive MIMO systems which utilize a large number of antennas in base stations focus on fully exploiting spatial resources, improving the performance of spectral efficiency and energy efficiency. However, antenna hardware impairments in the transmitter exist even for high-quality RF chains, as shown in Studer et al, WSA 2010,which affects the performance of the whole system. In this paper, a massive MIMO system model with multiple cells and multiple users is proposed in which spectral efficiency and energy efficiency with hardware impairment and pilot contamination is analyzed. The total energy consumption of the system includes both transmitted power and required to drive the link circuit power. Through numerical analysis, we draw some conclusions, RF impairment reduces the performance of spectrum efficiency and energy efficiency, increasing the number of antenna does not always improve the energy efficiency. Reducing pilot contamination effectively improve the efficiency of spectral and energy. The antenna's number which can achieve the maximum energy efficiency based on user, transmission power both for signal and pilot, distance principally.
机译:在基站中利用大量天线的大规模MIMO系统致力于充分利用空间资源,提高频谱效率和能效的性能。但是,即使对于高质量RF链,发射机中的天线硬件也会存在损害,如Studer等人在WSA 2010中所示,这会影响整个系统的性能。本文提出了一个具有多个小区和多个用户的大规模MIMO系统模型,其中分析了频谱效率和能量效率以及硬件损伤和导频污染。系统的总能耗包括发射功率和驱动链路电路功率所需的能量。通过数值分析,我们得出一些结论,射频损伤会降低频谱效率和能效的性能,增加天线数量并不总是能提高能效。减少飞行员污染可有效提高光谱和能量的效率。可以根据用户,信号和导频的发射功率(主要是距离)实现最大能量效率的天线数量。

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