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Design and Performance Analysis of Ultra-massive Multi-carrier Multiple Input Multiple Output Communications in the Terahertz Band

机译:太赫兹频段超大规模多载波多输入多输出通信的设计与性能分析

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Terahertz (THz)-band communication is envisioned as a key wireless technology to satisfy the need for much higher wireless data rates. To date, major progress in electronic, photonic and plasmonic technologies is finally closing the so-called THz gap. However, the exceedingly large available bandwidth at THz frequencies comes at the cost of a very high propagation loss. Combined with the power limitations of THz transceivers, this results in very short communication distances. Moreover, the absorption by water vapor molecules further splits the THz band in multiple transmission windows, which shrink as the transmission distance increases. To overcome these limitations, the concept of Ultra-Massive Multi-Carrier Multiple Input Multiple Output (UMMC MIMO) communication, which relies on the use of ultra-dense frequency-tunable plasmonic nano-antenna arrays, has been recently proposed. In this paper, the end-to-end performance of a UMMC MIMO link is analytically and numerically investigated. More specifically, an optimization framework is developed to determine the information capacity of UMMC MIMO communication by taking into account both the capabilities of THz plasmonic nano-antenna arrays and the peculiarities of the THz channel. In relation to the arrays, the frequency tunability of each individual element in the transmitter's and receiver's plasmonic arrays is taken into account. In terms of the channel, the impact of the spreading loss and the molecular absorption loss is considered. Extensive numerical results are provided to illustrate the performance of the proposed communication scheme.
机译:太赫兹(THz)频段通信被视为一种关键的无线技术,可以满足对更高无线数据速率的需求。迄今为止,电子,光子和等离子体技术的重大进展终于消除了所谓的太赫兹差距。但是,太赫兹频率上的巨大可用带宽是以非常高的传播损耗为代价的。结合太赫兹收发器的功率限制,这导致非常短的通信距离。此外,水蒸气分子的吸收进一步在多个透射窗中分裂了太赫兹带,随着传输距离的增加,THz谱带逐渐缩小。为了克服这些限制,最近提出了超大规模多载波多输入多输出(UMMC MIMO)通信的概念,该通信依赖于超密集频率可调等离子体纳米天线阵列的使用。本文对UMMC MIMO链路的端到端性能进行了分析和数值研究。更具体地说,通过考虑THz等离子体纳米天线阵列的能力和THz信道的特性,开发了一种优化框架来确定UMMC MIMO通信的信息容量。关于阵列,考虑了发射器和接收器的等离子体阵列中每个单独元件的频率可调性。在通道方面,考虑了扩散损失和分子吸收损失的影响。提供大量的数值结果来说明所提出的通信方案的性能。

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