Employing large antenna arrays and utilizing large bandwidth have the potential of bringing very high data rates to future wireless communication systems. However, this brings the system into the near-field regime and also makes the conventional transceiver architectures suffer from the wideband effects. To address these problems, in this paper, we propose a low-complexity frequency-aware beamforming solution that is designed for hybrid time-delay and phase-shifter based RF architectures. To reduce the complexity, the joint design problem of the time delays and phase shifts is decomposed into two subproblems, where a signal model inspired online learning framework is proposed to learn the shifts of the quantized analog phase shifters, and a low-complexity geometry-assisted method is leveraged to configure the delay settings of the time-delay units. Simulation results highlight the efficacy of the proposed solution in achieving robust performance across a wide frequency range for large antenna array systems.
翻译:使用大型天线阵列和使用大型带宽有可能给未来的无线通信系统带来极高的数据率。然而,这使得该系统进入近地系统,并使传统的收发机结构受到宽带效应的影响。为了解决这些问题,我们在本文件中提议为混合时间间隔和基于阶段转移的RF结构设计一个低复杂频率波束成型解决方案。为了降低复杂性,时间延迟和阶段转移的联合设计问题被分解成两个子问题,其中提出一个信号模型启发在线学习框架,以学习四分化的模拟相位转换器的转变,并利用一个低复杂度的几何方法来配置时间间隔装置的延迟设置。模拟结果突出了拟议解决方案在大型天线阵列系统的宽频范围内实现稳健性性能的效率。