Total energy efficiency of cellular large scale antenna system multiple access mobile networks

Hong Yang, T. Marzetta
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引用次数: 182

Abstract

Energy efficiency and spectral efficiency of a Large Scale Antenna System in both dense urban and suburban multi-macro-cellular scenarios are quantified using a new total energy efficiency model, which consists of a rigorous capacity lower bound and a power model accounting for RF generation, LSAS critical computing and a per antenna internal power consumption for other analog electronics and A/D and D/A converters that are associated with each LSAS service antenna. Based on our model, in dense urban, an LSAS with sixty-four OdB gain service antennas per cell, each service antenna consuming an internal power of 128 mW above the power required for RF generation and for LSAS critical computing, can simultaneously serve 15 users with a total energy efficiency almost 1000 times greater than that of a typical LTE base station and at the same time more than quadruple the aggregate spectral efficiency.
蜂窝大规模天线系统多址移动网络的总能量效率
采用新的总能效模型对密集城市和郊区多宏蜂窝场景下的大规模天线系统的能效和频谱效率进行了量化,该模型包括严格的容量下限和功率模型,该模型考虑了射频产生、LSAS关键计算以及与每个LSAS服务天线相关的其他模拟电子设备和a /D和D/ a转换器的每根天线内部功耗。根据我们的模型,在密集的城市中,每个小区有64个OdB增益服务天线的LSAS,每个服务天线消耗的内部功率比射频产生和LSAS关键计算所需的功率高128兆瓦,可以同时为15个用户服务,其总能源效率几乎是典型LTE基站的1000倍,同时是总频谱效率的四倍以上。
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