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Enhanced Transmit-Antenna Selection Schemes for Multiuser Massive MIMO Systems

机译:多用户大规模MIMO系统的增强型发射天线选择方案

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Massive multiple-input multiple-output (MIMO) systems are a core technology designed to achieve the performance objectives defined for 5G wireless communications. They achieve high spectral efficiency, reliability, and diversity gain. However, the many radio frequency chains required in base stations equipped with a high number of transmit antennas imply high hardware costs and computational complexity. Therefore, in this paper, we investigate the use of a transmit-antenna selection scheme, with which the number of required radio frequency chains in the base station can be reduced. This paper proposes two efficient transmit-antenna selection (TAS) schemes designed to consider a trade-off between performance and computational complexity in massive MIMO systems. The spectral efficiency and computational complexity of the proposed schemes are analyzed and compared with existing TAS schemes, showing that the proposed algorithms increase the TAS performance and can be used in practical systems. Additionally, the obtained results enable a better understanding of how TAS affects massive MIMO systems.
机译:大规模多输入多输出(MIMO)系统是一项旨在实现为5G无线通信定义的性能目标的核心技术。它们实现了高频谱效率,可靠性和分集增益。然而,在配备有大量发射天线的基站中所需的许多射频链意味着较高的硬件成本和计算复杂性。因此,在本文中,我们研究了发射天线选择方案的使用,通过该方案可以减少基站中所需的射频链数量。本文提出了两种有效的发射天线选择(TAS)方案,旨在考虑大规模MIMO系统中性能和计算复杂性之间的权衡。对所提方案的频谱效率和计算复杂度进行了分析,并与现有的TAS方案进行了比较,表明所提算法提高了TAS性能,可在实际系统中使用。此外,获得的结果使人们能够更好地了解TAS如何影响大规模MIMO系统。

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