高效节能的大规模MIMO网络

Q3 Environmental Science
Israa Hilme, A. Abdulkafi
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引用次数: 0

摘要

大规模多输入多输出(Massive MIMO)被广泛认为是下一代无线系统中极具前景的技术。大规模MIMO实现涉及将大量天线元件集成到基站(BS)中以增强频谱效率(SE)和能量效率(EE)。基站(BS)的能源效率(EE)对于电信网络运营商来说已经成为一个越来越重要的问题,因为需要考虑盈利能力,同时将其对环境的不利影响降至最低,并解决无线通信运营商面临的经济挑战。本文讨论并研究了大规模MIMO网络的EE以及EE、SE与带宽(B)、天线数量(M)、电路功率和用户设备数量(K)等参数之间的关系。对于固定电路功率(PFIX),仿真结果表明,随着天线数量的增加,EE可以增加约1.12。这项工作中的发现还表明,最大EE和最佳SE之间几乎呈线性关系,当每个天线(PBS)消耗的功率包含在电路功率中时,天线数量大幅增加。此外,当考虑每个用户设备消耗的功率(PUE)的影响时,SE随着比率(M/K)而增加,其中SE与M/K呈三次关系。另一方面,EE随着M/K比的增加而增加,直到M/K达到特定值。最大EE(以及因此的最佳SE)是通过大规模MIMO实现的,其中天线的数量是用户数量的三倍。然而,在这个值之后,EE开始退化,因为天线的数量被认为大于用户的数量,并且消耗了更多的能量,导致EE退化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-Efficient Massive MIMO Network
Massive Multiple-Input Multiple-Output (Massive MIMO) is widely regarded as a highly promising technology for the forthcoming generation of wireless systems. The massive MIMO implementation involves the integration of a substantial number of antenna elements into base stations (BSs) to enhance spectral efficiency (SE) and energy efficiency (EE). The energy efficiency (EE) of base stations (BSs) has become an increasingly important issue for telecommunications network operators due to the need to take care of profitability while simultaneously minimizing their detrimental effects on the environment and addressing economic challenges faced by wireless communication operators. In this paper, the EE of massive MIMO networks and the relationship between EE, SE, and other parameters like bandwidth (B), number of antennas (M), circuit power, and number of users’ equipment (K) are discussed and investigated. For a fixed circuit power (PFIX), simulation results showed that the EE could be increased by about 1.12 as the number of antennas was doubled. The findings in this work also indicated an almost linear relationship between maximum EE and optimal SE, with a massive increase in the number of antennas when the power consumed by each antenna (PBS) was included in circuit power. In addition, when considering the power consumed per user’s equipment (PUE) impact, the SE increased with the ratio (M/K), in which SE showed a cubic relationship against M/K. On the other hand, the EE increased with M/K ratio until M/K reached a specific value. The maximum EE (and hence optimum SE) was achieved by massive MIMO, where the number of antennas was three times the number of users. However, EE started degrading after this value, as the number of antennas was considered larger than the users’ and consumed more energy, resulting in EE degradation.
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来源期刊
CiteScore
1.50
自引率
0.00%
发文量
56
审稿时长
8 weeks
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