基于凸优化的大规模MIMO信道天线选择

Xiang Gao, O. Edfors, Jianan Liu, F. Tufvesson
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引用次数: 118

摘要

大规模MIMO,也称为超大型MIMO或大规模天线系统,是一种新技术,可以在多用户场景中提供大网络容量,其中基站配备大量天线,同时在同一频率上为多个单天线用户服务。然而,与天线相关的射频链增加了系统的复杂性和硬件成本。天线选择是一种信号处理技术,可以帮助减少射频链的数量,同时保持系统性能在一定的要求水平。研究了在2.6 GHz频率范围内测量的大规模MIMO信道中发射天线的选择。采用凸优化方法选择下行链路中脏纸编码(DPC)容量最大的天线子集。在一定数量的射频链下,我们将与射频链相同的基站天线数量增加到较大数量,并从中进行天线选择。研究表明,在可用天线多于射频链的情况下,天线选择可以显著提高系统性能,特别是对于紧凑的圆柱形阵列,在研究场景中,没有这种天线选择的圆柱形阵列的性能低于具有相同单元数量的物理大型线性阵列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antenna selection in measured massive MIMO channels using convex optimization
Massive MIMO, also known as very-large MIMO or large-scale antenna systems, is a new technique that potentially can offer large network capacities in multi-user scenarios, where the base stations are equipped with a large number of antennas simultaneously serving multiple single-antenna users on the same frequency. However, the radio-frequency (RF) chains associated with the antennas increase the system complexity and hardware cost. Antenna selection is a signal processing technique that can help reduce the number of RF chains, while preserving the system performance at a certain required level. We study the transmit antenna selection in measured massive MIMO channels from several measurement campaigns in the 2.6 GHz frequency range. Convex optimization is used to select the antenna subset that maximizes the dirty-paper coding (DPC) capacity in the downlink. With a certain number of RF chains, we increase the number of base station antennas from the same as the RF chains to a large number, from which we perform the antenna selection. The investigation shows that with more available antennas than RF chains, the antenna selection can significantly improve the system performance, especially for a compact cylindrical array, which without this antenna selection shows lower performance than a physically large linear array with the same number of elements, in the studied scenarios.
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