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Ultra-Massive MIMO Channel Modeling for Graphene-Enabled Terahertz-Band Communications

机译:用于石墨烯的太赫兹频段通信的超大规模MIMO通道建模

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Terahertz (THz)-band communication (0.1-10 THz) is envisioned as a key wireless technology to satisfy the in- creasing demand for faster data-rates in beyond 5G systems, thanks to its ultra-broad bandwidth. The very high path loss at THz frequencies and the limited transmission power of THz transceivers impose a major distance limitation for THz wireless communications. To increase the communication distance and the achievable data rates at THz-band frequencies, the concept of Ultra-Massive MIMO (UM-MIMO) has been introduced, which integrates a very large number of nano-antennas (e.g., 1024) in very small footprints (e.g., 1 mm^2). In this paper, an end-to-end model for UM-MIMO communication in the THz band is developed, by accounting for the properties of graphene- based plasmonic nano-antenna arrays and the peculiarities of three- dimensional THz propagation. The developed model is utilized to investigate the performance of the UM- MIMO channel. In particular, the path gain, the array factor and the the wideband capacity for both spatial multiplexing and beamforming regimes are analyzed. The results show that multi-Terabit-per-second links are feasible at distances of up to 20 m when utilizing 1024 × 1024 UM-MIMO systems at 0.3 THz and 1 THz.
机译:由于其超广泛的带宽,所设想为关键无线技术(0.1-10THz)作为关键无线技术,以满足超出5G系统的更快数据速率的速度需求。 THz频率的高路径损耗以及THz收发器的有限传输功率对THz无线通信的主要距离限制。为了提高通信距离和THz波段频率的可实现的数据速率,已经引入了超大规模MIMO(UM-MIMO)的概念,其在非常小的情况下整合了大量的纳米天线(例如,1024)脚印(例如,1 mm ^ 2)。在本文中,通过占石墨烯 - 基质纳米天线阵列的性质和三维THz传播的特性,开发了THz频带中UM-MIMO通信的端到端模型。开发模型用于研究UM-MIMO通道的性能。特别地,分析了路径增益,阵列因子和用于空间复用和波束成形制度的宽带容量。结果表明,当利用0.3至THz和1至1至THz时,在高达20米的距离下,多结数的每秒链路可行。

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