论文标题

灵活的杂种杂交边际成形,用于光谱高效的6G关节雷达沟通

Flexible Hybrid Beamforming for Spectrally Efficient 6G Joint Radar-Communications

论文作者

Kaushik, Aryan, Vlachos, Evangelos, Shakir, Muhammad Z., Shin, Wonjae, Liu, Rongke

论文摘要

联合雷达通信(JRC)使用相同的硬件和射频(RF)频谱资源的雷达和通信操作的多功能性受益。因此,JRC系统具有很高的潜力,可用于第六代(6G)标准。本文设计了一个具有最大光谱效率(SE)的多输入多重输出(MIMO)JRC的柔性波束形式。与发射器天线的数量相比,实施了杂种光束形成的RF链数较小。我们与通信和雷达实体共同表达JRC速率,包括一个加权因子,该因子描述了一个操作的优势。基于关节的建议方法最佳地选择了具有柔性hynrid Beam形成设计的RF链数。此外,当通信操作发生时,提出的方法考虑了雷达操作和反之亦然发生的干扰。基于分数编程的选择过程用于柔性光束成形和最佳数量的RF链,同时考虑每个操作的干扰。给出了仿真结果,并将其与不同的基线进行比较,以显示提出的柔性杂交边际方法的有效性。

Joint radar-communications (JRC) benefits from multi-functionality of radar and communication operations using same hardware and radio frequency (RF) spectrum resources. Thus JRC systems possess very high potential to be employed into the sixth generation (6G) standards. This paper designs a flexible beamformer for multiple-input multiple output (MIMO) JRC with maximized spectral efficiency (SE). Hybrid beamforming is implemented which constitutes lesser number of RF chains than number of transmitter antennas. We jointly express JRC rate with communication and radar entities including a weighting factor which depicts the dominance of one operation over the other. The joint-SE based proposed method optimally selects the number of RF chains with flexible hynrid beamforming design. Furthermore, when the communication operation takes place the proposed method takes into account the interference occurring from the radar operation and vice-versa. Fractional programming based selection procedure is used for flexible beamforming and optimal number of RF chains while considering interference of each operation. Simulation results are presented and compared with different baselines to show effectiveness of the proposed flexible hybrid beamforming method.

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