An Open Platform for Simulating the Physical Layer of 6G Communication Systems with Multiple Intelligent Surfaces

Alexandros Papadopoulos, Antonios Lalas, K. Votis, Dimitrios Tyrovolas, G. Karagiannidis, S. Ioannidis, C. Liaskos
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引用次数: 1

Abstract

Reconfigurable Intelligent Surfaces (RIS) constitute a promising technology that could fulfill the extreme performance and capacity needs of the upcoming 6G wireless networks, by offering software-defined control over wireless propagation phenomena. Despite the existence of many theoretical models describing various aspects of RIS from the signal processing perspective (e.g., channel fading models), there is no open platform to simulate and study their actual physical-layer behavior, especially in the multi-RIS case. In this paper, we develop an open simulation platform, aimed at modeling the physical-layer electromagnetic coupling and propagation between RIS pairs. We present the platform by initially designing a basic unit cell, and then proceeding to progressively model and simulate multiple and larger RISs. The platform can be used for producing verifiable stochastic models for wireless communication in multi-RIS deployments, such as vehicle-to-everything (V2X) communications in autonomous vehicles and cybersecurity schemes, while its code is freely available to the public.
具有多个智能表面的6G通信系统物理层模拟开放平台
可重构智能表面(RIS)是一项很有前途的技术,通过提供对无线传播现象的软件定义控制,可以满足即将到来的6G无线网络的极限性能和容量需求。尽管存在许多从信号处理角度描述RIS各个方面的理论模型(如信道衰落模型),但没有开放的平台来模拟和研究其实际物理层行为,特别是在多RIS情况下。在本文中,我们开发了一个开放式仿真平台,旨在对RIS对之间的物理层电磁耦合和传播进行建模。我们首先设计一个基本单元单元,然后逐步建模和模拟多个和更大的RISs。该平台可用于为多ris部署中的无线通信生成可验证的随机模型,例如自动驾驶汽车中的车辆到一切(V2X)通信和网络安全方案,而其代码则免费向公众开放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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