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Adaptive Beamforming With Resource Allocation for Distance-Aware Multi-User Indoor Terahertz Communications

机译:具有资源分配功能的自适应波束成形,可感知距离的多用户室内太赫兹通信

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摘要

Terahertz (THz) communication is envisioned as a key technology for next-generation ultra-high-speed wireless systems. In this paper, we study an indoor multi-user THz communication system with multiple antenna subarrays. To capture the distance-frequency-dependent characteristics of THz channels, we design a hybrid beamforming scheme with distance-aware multi-carrier transmission, including analog beamforming for user grouping and interference cancellation in radio-frequency (RF) domain and digital beamforming with dynamically selected subarrays at baseband. Specifically, an adaptive power allocation and low-complexity antenna subarray selection policy is developed to serve different users at different distances and reduce the cost of active RF circuits simultaneously, where two greedy subarray selection algorithms are proposed. The effectiveness of the proposed adaptive hybrid beamforming and antenna subarray selection algorithms is verified through simulation results, which achieves significant gains over other nonadaptive and non-distance-aware schemes.
机译:太赫兹(THz)通信被视为下一代超高速无线系统的一项关键技术。在本文中,我们研究了具有多个天线子阵列的室内多用户THz通信系统。为了捕获THz信道的距离频率相关特性,我们设计了一种具有距离感知多载波传输的混合波束成形方案,包括用于用户分组的模拟波束成形和射频(RF)域中的干扰消除以及具有动态变化的数字波束成形基带的选定子阵列。具体来说,提出了一种自适应功率分配和低复杂度天线子阵列选择策略,以服务于不同距离的不同用户,同时降低有源RF电路的成本,并提出了两种贪婪子阵列选择算法。仿真结果验证了所提出的自适应混合波束成形和天线子阵列选择算法的有效性,与其他非自适应和非距离感知方案相比,具有明显的优势。

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