论文标题

关于毫米波无人机网络的波束形成设计:功率与容量权衡

On the Beamforming Design of Millimeter Wave UAV Networks: Power vs. Capacity Trade-Offs

论文作者

Wang, Yang, Giordani, Marco, Zorzi, Michele

论文摘要

毫米波(MMWave)技术使无人机(UAVS)能够在第五代(5G)和以上(6G)网络中提供宽带高速无线连接。但是,单个UAV实施模拟波束形成(ABF)的足迹有限,需要多个航空站在群中运行以提供无处不在的网络覆盖范围,从而在电池电量消耗和群管理方面构成了严重的限制。一种可能的补救措施是研究杂交光束成形(HBF)收发器的概念,该收发器将模拟波束形成器的组合用作解决方案,以实现较高的灵活性。这种方法允许同一无人机站同时提供多个地面用户,尽管射频频率(RF)域中的能源消耗量要比其ABF对应物更高。本文介绍了可进行的随机分析,以表征UAV MMWave网络在城市场景中的下行链路挂断能力和功耗,重点是ABF和HBF架构之间的权衡。多光束覆盖模型是根据几个无人机特异性参数的函数得出的,包括无人机的数量,部署高度,天线配置和波束形成设计。通过模拟验证,我们的结果表明,尽管ABF在高海拔地区达到了更好的颈能力,但具有多个光束的HBF配置,尽管使用了更多的耗能的RF块,但仍会消耗较少的功率,而容量降低有限。

The millimeter wave (mmWave) technology enables unmanned aerial vehicles (UAVs) to offer broadband high-speed wireless connectivity in fifth generation (5G) and beyond (6G) networks. However, the limited footprint of a single UAV implementing analog beamforming (ABF) requires multiple aerial stations to operate in swarms to provide ubiquitous network coverage, thereby posing serious constraints in terms of battery power consumption and swarm management. A possible remedy is to investigate the concept of hybrid beamforming (HBF) transceivers, which use a combination of analog beamformers as a solution to achieve higher flexibility in the beamforming design. This approach permits multiple ground users to be served simultaneously by the same UAV station, despite involving higher energy consumption in the radio frequency (RF) domain than its ABF counterpart. This paper presents a tractable stochastic analysis to characterize the downlink ergodic capacity and power consumption of UAV mmWave networks in an urban scenario, focusing on the trade-off between ABF and HBF architectures. A multi-beam coverage model is derived as a function of several UAV-specific parameters, including the number of UAVs, the deployment altitude, the antenna configuration, and the beamforming design. Our results, validated by simulation, show that, while ABF achieves better ergodic capacity at high altitudes, an HBF configuration with multiple beams, despite the use of more power-hungry RF blocks, consumes less power all the time with limited capacity degradation.

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