基于6G无人机移动无线网络mURLLC的大规模mimo信道容量建模

Xi Zhang, Qixuan Zhu, H. Poor
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引用次数: 0

摘要

由于吞吐量和效率的显著提高,大规模多输入多输出(MIMO)已被认为是新兴的第六代(6G)无线网络上大规模超可靠和低延迟通信(mURLLC)的关键组成部分,以支持不断增长的移动用户流量需求。利用无人机群的动态架构,在无人机群与配备大量天线的地面站之间部署大规模MIMO通信网络是可行的。本文将无人机技术与大规模MIMO无线通信相结合,推导出了无人机- gs大规模MIMO信道的信道容量性能。建立了从配置单天线的无人机群到配置均匀矩形天线阵的无人机群的大规模MIMO信道模型,并得到了信道容量的封闭表达式。最后,我们使用数值结果来验证和评估我们所提出的大规模MIMO通信的信道性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Massive-MIMO Channel Capacity Modeling for mURLLC Over 6G UAV Mobile Wireless Networks
Due to significant improvements in throughput and efficiency, the massive multiple input multiple output (MIMO) has been recognized as a key component of the massive ultra-reliable and low-latency communications (mURLLC) over the emerging sixth generation (6G) wireless networks to support the continuously increasing mobile user's traffic demands. Leveraging the dynamic architecture of unmanned aerial vehicle (UAV) swarm, it is executable to deploy a massive MIMO communication networks between the UAV swarm and a ground-station (GS) equipped with massive antennas. In this paper we integrate the UAV technique with massive MIMO wireless communications and derive the channel capacity performance for the UAV-to-GS massive MIMO channel. We develop the massive MIMO channel model from a group of UAVs, equipped with single antenna, to the GS, equipped with uniform rectangular antenna array, and obtain the closed-form expressions for channel capacity. Finally, we use numerical results to validate and evaluate the channel performances of our proposed massive MIMO communications.
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