三维毫米波海量MIMO系统的DoA估计及可达速率分析

Lingjia Liu, Yan Li, Jianzhong Zhang
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引用次数: 33

摘要

预计未来移动数据流量将呈指数级增长。为了应对这一挑战并考虑基站的外形限制,3D毫米波大规模MIMO已被引入作为5G系统的使能技术。在三维毫米波大规模MIMO系统中,由于天线数量多,集群数量有限,基站主要依靠上行探测信号而不是反馈来获取信道知识进行三维MIMO操作。因此,多维信道估计是实现预测速率增益的关键。本文对采用ESPRIT方法在基站上估计到达方向(DoA)的性能进行了研究。进一步将DoA估计与底层的3D MIMO可实现速率联系起来,并对最优传输策略进行了表征。最后,分析了信道估计误差对潜在可达速率的影响。研究结果表明,在三维毫米波大规模MIMO系统的发射波束形成中,DoA估计是至关重要的。此外,最优传输策略在很大程度上取决于底层DoA估计的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DoA estimation and achievable rate analysis for 3D millimeter wave massive MIMO systems
Mobile data traffic is predicted to grow exponentially in the future. To address the challenge and consider the form factor limitation at the base station, 3D millimeter wave massive MIMO has been introduced as an enabling technology for 5G systems. In 3D millimeter wave massive MIMO systems, due to the large number of antennas and limited number of clusters, a base station will mainly rely on the uplink sounding signals instead of the feedback to figure out the channel knowledge to perform 3D MIMO operation. Accordingly, multi-dimensional channel estimation becomes critical for such systems to realize the predicted rate gains. In this paper, the performance of direction of arrival (DoA) estimation at the base station using ESPRIT method is characterized. The DoA estimation is further related to the underlying 3D MIMO achievable rate and the optimal transmission strategy is characterized. Finally, the impact of channel estimation error on the underlying achievable rate is analyzed. Our results suggest that DoA estimation is crucial for the transmit beam-forming of 3D millimeter wave massive MIMO systems. Furthermore, the optimal transmission strategy depends heavily on the performance of the underlying DoA estimation.
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