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A Dynamic Array-of-Subarrays Architecture and Hybrid Precoding Algorithms for Terahertz Wireless Communications

机译:用于太赫兹无线通信的动态子阵列架构和混合预编码算法

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摘要

Terahertz (THz) communications are envisioned as a key technology for 6G wireless systems, owing to an unprecedented promised multi-GHz bandwidth. While THz band suffers from huge propagation losses, large arrays of sub-millimeter wavelength antennas can be realized in ultra-massive multiple-input multiple-output (UM-MIMO) systems to enhance the received power and overcome the distance limitation. In this paper, a dynamic array-of-subarrays (DAoSA) hybrid precoding architecture is proposed to reduce the power consumption while meeting the data rate requirement in THz UM-MIMO systems. The connections between RF chains and subarrays are intelligently adjusted through a network of switches. First, to solve the intractable DAoSA hybrid precoding problem, element-by-element (EBE) and vectorization-based (VEC) algorithms are derived. Moreover, to determine the connections of the switches, near-optimal progressive stage-by-stage (PSBS), low-complexity alternating-selection (AS) and block-diagonal-search (BDS) algorithms are developed. Extensive simulation results show that both the EBE and VEC algorithms have higher spectral efficiency than existing hybrid precoding algorithms. Furthermore, the power consumption of the DAoSA architecture is substantially lessened, with PSBS, AS and BDS algorithms, respectively. The developed DAoSA architecture associated with proposed hybrid precoding and switch network design algorithms demonstrates a superior capability on balancing the spectral efficiency and power consumption.
机译:由于前所未有的承诺的多GHz带宽,Terahertz(Thz)通信被设想为6G无线系统的关键技术。虽然THz带遭受巨大的传播损失,但是可以在超大量的多输入多输出(UM-MIMO)系统中实现大型的亚毫米波长天线,以增强接收的功率并克服距离限制。在本文中,提出了一种动态的子阵列(DAOSA)混合预编码架构,以减少在符合THz UM-MIMO系统中的数据速率要求的同时降低功耗。 RF链和子阵列之间的连接通过交换机网络智能地调整。首先,为了解决难以应变的DAOSA混合预编码问题,导出逐个元素(EBE)和基于VEC)算法。此外,为了确定开关的连接,开发了近乎最佳逐步级(PSB),低复杂性交替选择(AS)和块对角线搜索(BDS)算法。广泛的仿真结果表明,EBE和VEC算法均具有比现有混合预编码算法更高的光谱效率。此外,DAOSA架构的功耗显着减小了PSB,AS和BDS算法。与所提出的混合式预编码和交换网络设计算法相关联的DAOSA架构演示了平衡光谱效率和功耗的卓越能力。

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