利用时空调制元面进行无线通信

Marouan Mizmizi;Dario Tagliaferri;Umberto Spagnolini
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引用次数: 0

摘要

时空调制元面(STMM)是下一代 6G 无线通信网络的一项新研究技术。STMM 通过元原子上的时变相位函数来增强空间相位函数,从而传递可能调制冲击信号的信息。因此,STMM 代表了可重构智能表面(RIS)的发展,后者只设计空间相位模式。STMM 可在不增加相关能量预算的情况下传递信号,这对于能量受到严格限制的应用非常方便。本文提出了基于 STMM 的无线通信数学模型,为两种潜在的 STMM 架构奠定了基础。其中一种具有出色的设计灵活性,而另一种则更具成本效益。该模型描述了 STMM 的显著特点(如时空耦合)及其对系统性能的影响。所提出的 STMM 模型符合全双工系统架构的设计标准,其中源自 STMM 的时间信号会产生与入射信号重叠的调制。所展示的数值结果证明了所提模型的功效及其彻底改变无线通信的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wireless Communications With Space–Time Modulated Metasurfaces
Space-time modulated metasurfaces (STMMs) are a newly investigated technology for the next 6G generation wireless communication networks. An STMM augments the spatial phase function with a time-varying one across the meta-atoms, allowing for the conveyance of information that possibly modulates the impinging signal. Hence, STMM represents an evolution of reconfigurable intelligent surfaces (RIS), which only design the spatial phase pattern. STMMs convey signals without a relevant increase in the energy budget, which is convenient for applications where energy is a strong constraint. This paper proposes a mathematical model for STMM-based wireless communication, that creates the basics for two potential STMM architectures. One has excellent design flexibility, whereas the other is more cost-effective. The model describes STMM’s distinguishing features, such as space-time coupling, and their impact on system performance. The proposed STMM model addresses the design criteria of a full-duplex system architecture, in which the temporal signal originating at the STMM generates a modulation overlapped with the incident one. The presented numerical results demonstrate the efficacy of the proposed model and its potential to revolutionize wireless communication.
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