Pseudo-Random Sequence (PRS) Space-time-modulated Metasurfaces: General Concept and Fundamental Operations

Xiaoyi Wang, C. Caloz
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引用次数: 1

Abstract

This paper presents the general concept and fundamental operations of a new class of space-time-modulated metasurfaces, viz., space-time metasurfaces modulated by PseudoRandom Sequence (PRS) waveforms. The metasurfaces may be either purely PRS time-modulated or space-time-modulated by a set of orthogonal PRSs. The PRSs are quasi-random periodic sequences with binary values (±1) and exhibit noise-like wideband spectra. The metasurfaces are assumed to operate in the slow time modulation regime, where the time-variance and frequency-dispersion effects are safely decoupled. In this regime, the bit duration of the PRS is much larger than the transient time associated with temporal dispersion, i.e., than the time for the metasurface to reach the steady regimes in each modulation state. PRS space-time-modulated metasurfaces provide many functionalities that complement those of their deterministic-modulation counterparts. In contrast to these metasurfaces, they massively transform the temporal spectrum of the incident waves, hence providing novel encoding and decoding capabilities. The resulting metasurfaces can perform fundamental operations such as spectrum spreading, interference suppression, and row/cell selection, which are described in detail and which lead to applications such as electromagnetic stealth, secure communication, direction of arrival estimation, and spatial multiplexing.
伪随机序列时空调制元曲面:一般概念和基本操作
本文给出了一类新的时空调制元曲面的一般概念和基本运算,即伪随机序列(PRS)波形调制的时空调制元曲面。超表面可以是纯PRS时调制的,也可以是由一组正交PRS调制的时空调制的。prs是具有二值(±1)的准随机周期序列,具有类噪声宽带谱。假设超表面在慢时间调制状态下工作,其中时间方差和频率色散效应是安全解耦的。在这种状态下,PRS的比特持续时间远远大于与时间色散相关的瞬态时间,即比每个调制状态下的超表面达到稳定状态的时间要大得多。PRS时空调制的元表面提供了许多功能,补充了它们的确定性调制对应物。与这些超表面相比,它们大规模地变换入射波的时间谱,从而提供新的编码和解码能力。由此产生的元表面可以执行基本操作,例如频谱扩展,干扰抑制和行/单元选择,详细描述了这些操作,并导致诸如电磁隐身,安全通信,到达方向估计和空间复用等应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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