6G下太赫兹通信联合波形与波前工程

Duschia M. Bodet, J. Jornet
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引用次数: 0

摘要

太赫兹(THz)频段通信的定位是提供广泛的可用带宽,以满足社会对更快数据速率日益增长的需求。然而,由于太赫兹信号的波长相对较小,并且需要高增益(即,与波长相比,电较大)的天线,许多预计在未来实现太赫兹通信的设备将可能在近场中运行。在太赫兹通信的令人兴奋的近场解决方案中,许多依赖于使用天线阵列或超表面等薄可编程设备控制传播波前的能力。然而,当使用相控阵或超表面来操纵宽带波束时,系统会受到众所周知的波束斜视效应的影响,这导致信号频谱内不同频率的光束聚焦在略微不同的方向上。这种效应可以对接收器观察到的宽带信号产生频率选择响应。本文描述了可重构智能表面(RIS)的频率选择响应特性,并证明考虑波形设计(即调制方案)有助于提高RIS在宽带信号上的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Joint Waveform & Wavefront Engineering for Terahertz Communications in 6G
Terahertz (THz) band communications are positioned to provide the broad available bandwidths needed to fulfill society’s increasing demand for faster data rates. However, due to the relatively small wavelength of THz signals and the need for high gain (i.e., electrically large compared to the wavelength) antennas, many devices that are anticipated to implement THz communications in the future will likely be operating in the near field. Of the exciting near-field solutions for THz communications, many rely on the ability to control the propagating wavefront with a thin programmable device such as an antenna array or a metasurface. However, when using a phased array or metasurface to manipulate a broadband beam, systems suffer from the well-known beam squint effect, which results in different frequencies within the signal spectrum being focused in slightly different directions. This effect can impart a frequency-selective response on a broadband signal observed by a receiver. This paper characterizes the frequency-selective response of a reconfigurable intelligent surface (RIS) and demonstrates that considering the waveform design (i.e., modulation scheme) can help improve the performance of a RIS operating on a broadband signal.
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