论文标题

基于脉冲宽度的设计,不同步可重构的智能表面

Unsynchronized Reconfigurable Intelligent Surfaces with Pulse-Width-Based Design

论文作者

Fathnan, Ashif Aminulloh, Takimoto, Kairi, Tanikawa, Mizuki, Nakamura, Kazutomo, Sugiura, Shinya, Wakatsuchi, Hiroki

论文摘要

在此对应关系中,我们提出了可重构的智能表面(RIS),该表面(RIS)根据脉冲宽度反映了所需方向的入射信号。这种独特的重构性是由于RIS单位细胞中嵌入式非线性电路的瞬时响应而出现的。 RI不需要连接到单位单元的任何控制线或与基站的精确同步,从而导致RIS系统的复杂性降低,但允许根据入射脉冲宽度允许自动化的光束成型特性。为了验证该方案,考虑了使用二进制相移键的RIS系统模型,其中RIS无线链接连接到输入处的单个发射器,而在输出处将有两个接收器。数值示范表明,在两个接收器中,接收到对比度误差率的调制信号,与上述基于脉冲宽度的梁控制一致。

In this correspondence, we present a reconfigurable intelligent surface (RIS) that reflects an incident signal to the desired direction, depending on the pulse width. This unique reconfigurability emerges by virtue of the transient response of the embedded nonlinear circuits within the RIS unit cells. The RIS does not need any control lines connected to the unit cells or precise synchronization with the base station, leading to reduced complexity of the RIS system yet allowing automated beamforming characteristics in accordance with the incident pulse width. To verify this scheme, an RIS system model using binary phase shift keying is considered, in which the RIS wireless link is connected to a single transmitter at the input and two receivers at the output. Numerical demonstrations show that modulated signals are received with contrasting bit-error rates in the two receivers, consistent with the aforementioned pulse-width-based beam control.

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