Modeling RIS From Electromagnetic Principles to Communication Systems—Part I: Synthesis and Characterization of a Scalable Anomalous Reflector

IF 4.6 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Sravan Kumar Reddy Vuyyuru;Le Hao;Markus Rupp;Sergei A. Tretyakov;Risto Valkonen
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引用次数: 0

Abstract

This work aims to build connections between the electromagnetic (EM) and communication aspects of reconfigurable intelligent surfaces (RISs) by proposing a methodology to combine outputs from EM RIS design into an RIS-tailored system-level simulator and a ray tracer. In this first part of the contribution, a periodic anomalous reflector is designed using an algebraic array antenna scattering synthesis technique that enables electromagnetically accurate modeling of scattering surfaces with both static and reconfigurable scattering characteristics. The multimode periodic structure, capable of scattering into several anomalous angles through manipulation of reactive loads, is then cropped into finite-sized arrays, and the quantization effects of the load reactances on the array scattering are analyzed. An experimental anomalous reflector is demonstrated with a comparison between simulated and measured scattering performance. In the second part, the simulated receiving and transmitting scattering patterns of the anomalous reflector are utilized to build an electromagnetically consistent path loss model of an RIS into a system-level simulator. Large-scale fading is analyzed in simple scenarios of RIS-assisted wireless networks to verify the communication model, and an indoor scenario measurement using the manufactured anomalous reflector sample to support the simulation analysis. After verifying the connections between EM and communication aspects through simulations and measurements, the proposed communication model can be used for a broad range of RIS designs to perform large-scale system-level and ray-tracing simulations in realistic scenarios.
从电磁原理到通信系统的RIS建模-第一部分:可伸缩异常反射器的合成和表征
这项工作旨在通过提出一种方法,将EM - RIS设计的输出结合到RIS定制的系统级模拟器和光线追踪器中,从而在可重构智能表面(RISs)的电磁(EM)和通信方面建立联系。在本文的第一部分中,使用代数阵列天线散射合成技术设计了一个周期性异常反射器,该技术能够对具有静态和可重构散射特性的散射表面进行电磁精确建模。该多模周期结构可以通过无功负载的操纵散射成多个异常角度,然后将其裁剪成有限尺寸的阵列,并分析了负载电抗对阵列散射的量化效应。实验证明了一种异常反射器,并将模拟散射性能与实测散射性能进行了比较。第二部分,利用模拟的异常反射面接收和发射散射图,将RIS的电磁一致性路径损耗模型构建为系统级模拟器。分析了ris辅助无线网络的简单场景下的大规模衰落,验证了通信模型,并利用制造的异常反射器样本进行了室内场景测量,以支持仿真分析。在通过模拟和测量验证了EM和通信方面之间的联系之后,所提出的通信模型可用于广泛的RIS设计,以在现实场景中执行大规模的系统级和光线追踪模拟。
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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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