Reconfigurable intelligent surfaces for wireless communications: Overview of hardware designs, channel models, and estimation techniques

Mengnan Jian;George C. Alexandropoulos;Ertugrul Basar;Chongwen Huang;Ruiqi Liu;Yuanwei Liu;Chau Yuen
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Abstract

The demanding objectives for the future sixth generation (6G) of wireless communication networks have spurred recent research efforts on novel materials and radio-frequency front-end architectures for wireless connectivity, as well as revolutionary communication and computing paradigms. Among the pioneering candidate technologies for 6G belong the reconfigurable intelligent surfaces (RISs), which are artificial planar structures with integrated electronic circuits that can be programmed to manipulate the incoming electromagnetic field in a wide variety of functionalities. Incorporating RISs in wireless networks have been recently advocated as a revolutionary means to transform any wireless signal propagation environment to a dynamically programmable one, intended for various networking objectives, such as coverage extension and capacity boosting, spatiotemporal focusing with benefits in energy efficiency and secrecy, and low electromagnetic field exposure. Motivated by the recent increasing interests in the field of RISs and the consequent pioneering concept of the RIS-enabled smart wireless environments, in this paper, we overview and taxonomize the latest advances in RIS hardware architectures as well as the most recent developments in the modeling of RIS unit elements and RIS-empowered wireless signal propagation. We also present a thorough overview of the channel estimation approaches for RIS-empowered communications systems, which constitute a prerequisite step for the optimized incorporation of RISs in future wireless networks. Finally, we discuss the relevance of the RIS technology in the latest wireless communication standards, and highlight the current and future standardization activities for the RIS technology and the consequent RIS-empowered wireless networking approaches.
用于无线通信的可重构智能表面:硬件设计、信道模型和估计技术概述
未来第六代(6G)无线通信网络的苛刻目标促使最近对用于无线连接的新型材料和射频前端架构以及革命性的通信和计算范式进行了研究。6G的开创性候选技术包括可重构智能表面(RIS),这是一种具有集成电子电路的人工平面结构,可以编程以操纵各种功能的入射电磁场。最近,在无线网络中引入RIS被认为是将任何无线信号传播环境转换为动态可编程环境的革命性手段,旨在实现各种网络目标,如覆盖范围扩展和容量提升、具有能效和保密优势的时空聚焦以及低电磁场暴露。受RIS领域最近日益增长的兴趣以及由此产生的RIS智能无线环境的开创性概念的启发,在本文中,我们概述并分类了RIS硬件架构的最新进展,以及RIS单元元件建模和RIS无线信号传播的最新发展。我们还全面概述了RIS授权通信系统的信道估计方法,这是在未来无线网络中优化RIS的先决条件。最后,我们讨论了RIS技术在最新无线通信标准中的相关性,并重点介绍了当前和未来RIS技术的标准化活动以及随之而来的RIS授权无线网络方法。
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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