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Dynamic Beamforming Algorithms for Ultra-directional Terahertz Communication Systems Based on Graphene-based Plasmonic Nano-antenna Arrays

机译:基于石墨烯的等离激元纳米天线阵列的超定向太赫兹通信系统的动态波束形成算法

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Terahertz-band (0.1 to 10 THz) communication is envisioned as a key wireless technology to satisfy the need for much higher wireless data rates. The use of nanomaterials such as graphene is enabling the development of miniature plasmonic devices, which intrinsically operate in the THz band. In this paper, a new antenna array architecture that leverages the properties of graphene-based plasmonic devices is presented. In the proposed architecture, each element is integrated by a THz plasmonic signal source, a THz plasmonic direct signal modulator, and a THz plasmonic nano-antenna. The very small size of the resulting frontend allows its integration in very dense arrays, which are needed to overcome the very high path-loss at THz frequencies. Moreover, new beamforming strategies at the single element level and at the integrated array level are possible. The performance of the resulting beamforming antenna arrays are derived and numerically investigated by means of electromagnetic simulations.
机译:太赫兹频段(0.1到10 THz)通信被视为一种重要的无线技术,可以满足对更高无线数据速率的需求。纳米材料(例如石墨烯)的使用使微型等离子激元器件的开发成为可能,这些器件本质上在THz波段工作。在本文中,提出了一种新的天线阵列架构,该架构利用了基于石墨烯的等离激元器件的特性。在提出的架构中,每个元素都由THz等离子体信号源,THz等离子体直接信号调制器和THz等离子体纳米天线集成在一起。生成的前端非常小,可以将其集成到非常密集的阵列中,这是克服THz频率下非常高的路径损耗所必需的。此外,在单元素级别和集成阵列级别的新波束成形策略是可能的。得出的波束成形天线阵列的性能可以通过电磁仿真得出并进行数值研究。

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