论文标题
智能Omni曲面:反射 - 拨回电路模型,全维束缚和系统实现
Intelligent Omni-Surfaces: Reflection-Refraction Circuit Model, Full-Dimensional Beamforming, and System Implementation
论文作者
论文摘要
智能Omni-Surface(ios)是一种动态跨表面,最近提出了通过实现异常反射和异常折射的双重功能来实现全等通信。现有的研究工作仅提供了简化的模型,用于iOS的反射和折射响应,这些模型并不明确取决于iOS的物理结构和电磁(EM)波的入射角。因此,可用的反射 - 差异模型不足以表征全维通信的性能。在本文中,我们为iOS提出了一个完整且详细的基于电路的反射折段模型,该模型是根据iOS元素的物理结构和等效电路进行配制的,以及我们对其对全波EM模拟进行验证。基于提出的基于iOS的电路模型,我们分析了反射和传输系数之间的不对称性。此外,提出的基于电路的模型被用于优化iOS辅助网络的混合波束形成,从而改善了系统性能。为了验证基于电路的模型,理论发现并评估全尺寸波束形成的性能,我们实施了iOS的原型,并部署了iOS辅助的无线通信测试,以实验测量光束模式并量化可实现的速度。获得的实验结果验证了IOSS的理论发现和基于电路反射模型的准确性。
The intelligent omni-surface (IOS) is a dynamic metasurface that has recently been proposed to achieve full-dimensional communications by realizing the dual function of anomalous reflection and anomalous refraction. Existing research works provide only simplified models for the reflection and refraction responses of the IOS, which do not explicitly depend on the physical structure of the IOS and the angle of incidence of the electromagnetic (EM) wave. Therefore, the available reflection-refraction models are insufficient to characterize the performance of full-dimensional communications. In this paper, we propose a complete and detailed circuit-based reflection-refraction model for the IOS, which is formulated in terms of the physical structure and equivalent circuits of the IOS elements, as well as we validate it against full-wave EM simulations. Based on the proposed circuit-based model for the IOS, we analyze the asymmetry between the reflection and transmission coefficients. Moreover, the proposed circuit-based model is utilized for optimizing the hybrid beamforming of IOS-assisted networks and hence improving the system performance. To verify the circuit-based model, the theoretical findings, and to evaluate the performance of full-dimensional beamforming, we implement a prototype of IOS and deploy an IOS-assisted wireless communication testbed to experimentally measure the beam patterns and to quantify the achievable rate. The obtained experimental results validate the theoretical findings and the accuracy of the proposed circuit-based reflection-refraction model for IOSs.