论文标题
在表面波传播特征上,基于孔隙率的可重构表面
On Surface Wave Propagation Characteristics of Porosity-Based Reconfigurable Surface
论文作者
论文摘要
可促进节能,智能表面波传播的可重构表面最近作为一种在多核系统和6G无线通信中找到应用的技术。在本文中,我们考虑了基于孔隙率的可重构表面,其中有一些可以用液体金属(例如Galinstan)按需填充的空腔,以创建适应性的通道以进行有效的波浪传播。我们旨在研究因离散孔隙率的衍射而导致的信号波动的传播现象,并研究不同的孔隙度模式如何影响这种现象。当将WR-34波导用作传感器时,我们的结果涵盖了21.7GHz和31.6GHz之间的频率范围。
Reconfigurable surfaces facilitating energy-efficient, intelligent surface wave propagation have recently emerged as a technology that finds applications in many-core systems and 6G wireless communications. In this paper, we consider the porosity-based reconfigurable surface where there are cavities that can be filled on-demand with fluid metal such as Galinstan, in order to create adaptable channels for efficient wave propagation. We aim to investigate the propagation phenomenon of signal fluctuation resulting from the diffraction of discrete porosity and study how different porosity patterns affect this phenomenon. Our results cover the frequency range between 21.7GHz and 31.6GHz when a WR-34 waveguide is used as the transducer.