Design of 1-Bit Digital Subwavelength Metasurface Element for Sub-6 GHz Applications

J. Kazim, M. Rehman, Mu’ath Al-Hasan, I. Mabrouk, M. Imran, Q. Abbasi
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引用次数: 2

Abstract

This paper proposes a novel 1-bit, electronically reconfigurable, subwavelength metasurface unit cell for sub-6 GHz applications. 180° phase shift is achieved by integrating a single PIN diode in the structure. The unit cell incorporates three layers: The top layer is used for wave reflection, the bottom layer is used for PIN diode placement and DC biasing, and the middle layer acts as a ground plane. The resonance of the unit cell is kept around 3.3 GHz. The magnitude of the reflection coefficient is above 90%. Besides, a phase difference of 180°+20° is achieved over 200 MHz bandwidth. With these characteristics, the proposed unit cell can find its applications in programmable metasurface functions such as beam steering, beam focusing and beam scattering.
用于sub - 6ghz应用的1位数字亚波长超表面元件设计
本文提出了一种新颖的1位,电子可重构,亚波长超表面单元格,用于sub- 6ghz应用。180°相移是通过在结构中集成一个PIN二极管实现的。单元电池包含三层:顶层用于波反射,底层用于PIN二极管放置和直流偏置,中间层作为接地面。单体电池的谐振保持在3.3 GHz左右。反射系数的量级在90%以上。此外,在200 MHz带宽上实现了180°+20°的相位差。由于这些特点,所提出的单元电池可以在可编程的超表面功能中得到应用,如光束转向、光束聚焦和光束散射。
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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