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Energy-Efficient Design of Indoor mmWave and Sub-THz Systems With Antenna Arrays

机译:带有天线阵列的室内毫米波和亚太赫兹系统的节能设计

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摘要

Emerging millimeter-wave (mmWave) and Terahertz (THz) systems is a promising revolution for next-generation wireless communications. In this paper, we study an indoor multi-user mmWave and sub-THz system with large antenna arrays, where two different types of architecture, the fully-connected structure and the array-of-subarray structure, are investigated. Specifically, the Doherty power amplifier (PA) is adopted to improve the PA efficiency of the system, and the associated nonlinear system power consumption models with insertion power loss are developed. By capturing the characteristics of the mmWave and sub-THz channels, we design different hybrid beamforming schemes for the two structures with low complexity. We further compare the achievable rates of the two structures and show that, with the insertion loss, the achievable rate of the array-of-subarray structure is generally larger than that of the fully-connected structure. Moreover, we propose the optimal power control strategies for both structures to maximize the energy efficiency of the system and demonstrate that the energy efficiency of the array-of-subarray structure outperforms that of the fully-connected structure. Simulation results are provided to compare and validate the performance of the two structures, where the array-of-subarray structure shows a great advantage over the fully-connected structure in both spectral efficiency and energy efficiency.
机译:新兴的毫米波(mmWave)和太赫兹(THz)系统是下一代无线通信的有希望的革命。在本文中,我们研究了具有大型天线阵列的室内多用户毫米波和亚太赫兹系统,其中研究了两种不同类型的架构,即全连接结构和子阵列结构。具体而言,采用Doherty功率放大器(PA)来提高系统的PA效率,并开发了具有插入功率损耗的相关非线性系统功耗模型。通过捕获毫米波和次太赫兹通道的特征,我们为两种结构设计了不同的混合波束成形方案,具有较低的复杂度。我们进一步比较了这两种结构的可实现速率,结果表明,随着插入损耗的增加,子阵列结构的可实现速率通常大于完全连接结构的可实现速率。此外,我们提出了两种结构的最佳功率控制策略,以最大化系统的能量效率,并证明子阵列结构的能量效率优于完全连接的结构。提供了仿真结果以比较和验证两种结构的性能,其中子阵列阵列结构在频谱效率和能量效率方面都比完全连接的结构显示出极大的优势。

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