可重构的元表面,传输和反射功能都有精确的相位分布

IF 4.6 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Antennas and Propagation Pub Date : 2024-08-05 DOI:10.1109/TAP.2024.3435525
Chao Zhang;Yu Luo;Ningning Yan;Xiaoxuan Guo;Yue Guo;Kaixue Ma
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引用次数: 0

摘要

本文提出了一种电气可重构元表面(RM)元件(RME),它可以通过单个开关(PIN 二极管)实现 360° 相位覆盖的传输和反射功能。通过改变 PIN 二极管的工作状态,RME 可以在传输和反射功能之间切换。为了实现连续的相位补偿,RME 采用了经典的多层结构。为确保 RME 的相位响应在两种状态下都遵循近似趋势,对可重构结构的位置进行了优化。根据 RME 在两种状态下的相位响应曲线,拟合出构建元表面孔径的相位分布函数。然后,就可以设计 RM,并在两种状态下同时获得精确的相位分布。我们仿真并制造了一个 9 次元 RM。它可以获得 360° 连续相位补偿和两种状态下偏振相同的高增益铅笔光束。在两种状态下,测得的峰值孔径效率高达 32.2%-33.7%。此外,所提出的 RM 还集成了偏置电路网络,由单个电压源控制,以较低的成本实现了透射/反射功能的融合设计。
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A Reconfigurable Metasurface With Precise Phase Distribution for Both Transmission and Reflection Functions
An electrically reconfigurable metasurface (RM) element (RME) is proposed, which can realize both transmission and reflection functions with 360° phase coverage by a single switch (PIN diode). Through modifying the operating state of the PIN diode, the RME can switch between transmission and reflection functions. To achieve continuous phase compensation, the RME employs a classical multilayer structure. To ensure that the RME’s phase response follows the approximate trend in both states, the reconfigurable structure’s location is optimized. Based on the phase response curves of the RME in two states, the phase distribution function constructing the metasurface aperture is fit. Then, the RM can be designed and obtain precise phase distribution in both states simultaneously. A $9\times 9$ -element RM is simulated and fabricated. It can obtain 360° continuous phase compensation and high-gain pencil beam with the same polarization in both states. The measured peak aperture efficiency is as high as 32.2%–33.7% in the two states. In addition, the proposed RM has an integrated biasing circuit network, which is controlled by a single voltage source and realizes the fusion design of transmission/reflection functions at a low cost.
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来源期刊
CiteScore
10.40
自引率
28.10%
发文量
968
审稿时长
4.7 months
期刊介绍: IEEE Transactions on Antennas and Propagation includes theoretical and experimental advances in antennas, including design and development, and in the propagation of electromagnetic waves, including scattering, diffraction, and interaction with continuous media; and applications pertaining to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques
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