Reconfigurable intelligent surface with high optical-transparency based on metalmesh

Jing Cheng Liang , Peng Zhang , Qiang Cheng , Tie Jun Cui
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引用次数: 1

Abstract

Reconfigurable intelligent surfaces (RISs) have aroused extensive attentions from academic and wireless communication communities due to their abilities to customize the electromagnetic (EM) characteristics of the propagation channels flexibly and rapidly. Recent advances in theoretical innovations and prototype systems have demonstrated the advantages of RISs in terms of low cost, low power consumption, and easy deployment. Meanwhile, the optically transparent RISs are demanded in some application scenarios. In this paper, we propose a 2-bit metalmesh-based RIS with high optical-transparency. By analyzing the surface current distributions on the element, we employ the metalmesh-grid patterns and metalmesh-stripe patterns on the top and ground layers respectively. The metalmesh patterns can help improve the optical transparency of RISs, while maintaining similar microwave characteristics. The RIS can reach the optical transparency of 79%, and the reflection amplitude is greater than −3.2 ​dB within the operating band. Finally, to verify the capability of the proposed RIS in wavefront controls, the far-field scattering patterns of the RIS with different coding sequences are investigated and the simulation results are in good agreement with the theoretical results.

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基于金属网的可重构高光学透明度智能表面
可重构智能表面(RIS)由于能够灵活快速地定制传播信道的电磁特性,引起了学术界和无线通信界的广泛关注。理论创新和原型系统的最新进展证明了RIS在低成本、低功耗和易于部署方面的优势。同时,在一些应用场景中需要光学透明的RIS。在本文中,我们提出了一种具有高光学透明度的基于2位金属网的RIS。通过分析元件上的表面电流分布,我们分别在顶层和底层使用金属网网格图案和金属网条纹图案。金属网图案可以帮助提高RIS的光学透明度,同时保持类似的微波特性。RIS可以达到79%的光学透明度,反射幅度大于−3.2​工作频带内的dB。最后,为了验证所提出的RIS在波前控制中的能力,研究了不同编码序列的RIS的远场散射模式,仿真结果与理论结果吻合良好。
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