Selvaraj Monisha, Vijay Ramya, Anbazhagan Rajesh, Rengarajan Amirtharajan
School of EEE, SASTRA University, Thanjavur 613401, India.
Sensors (Basel). 2023 Nov 14;23(22):9166. doi: 10.3390/s23229166.
With the continuous advancement of technology, there is an increasing need for innovative solutions that can handle complex applications such as haptic communications, Internet of Things for smart cities, automation, and manufacturing. One technology that has received much attention is the phase reconfigurable metasurface for reconfigurable intelligent surfaces (RISs). The RIS demands low-power consumption, simple configuration, angular stability, and polarization insensitivity. The use of phase reconfigurable metasurfaces provides benefits such as low cost, low power consumption, and improved communication coverage and quality. This article introduces a reconfigurable combined-loop metasurface that can effectively manipulate phase reflection. This is achieved by incorporating four PIN diodes between two meta-atoms of a 2 × 2 periodic array within a single-layer metallic structure. By controlling the state of the PIN diodes, which can be switched into 16 different states, the metasurface can achieve various phase reflections. The proposed structure has validated a 32× 32 metasurface through numerical simulations and experiments that exhibit promising results, demonstrating its potential for use in 6G applications.
随着技术的不断进步,对能够处理诸如触觉通信、智能城市物联网、自动化和制造等复杂应用的创新解决方案的需求日益增加。一种备受关注的技术是用于可重构智能表面(RIS)的相位可重构超表面。RIS要求低功耗、配置简单、角度稳定性和偏振不敏感性。相位可重构超表面的使用具有低成本、低功耗以及改善通信覆盖范围和质量等优点。本文介绍了一种可有效操纵相位反射的可重构组合环超表面。这是通过在单层金属结构内的2×2周期阵列的两个元原子之间并入四个PIN二极管来实现的。通过控制可切换到16种不同状态的PIN二极管的状态,超表面可以实现各种相位反射。所提出的结构通过数值模拟和实验验证了一个32×32的超表面,其结果很有前景,证明了其在6G应用中的潜力。