Reconfigurable Intelligent Surfaces for 6G: Engineering Challenges and the Road Ahead

Xianming Zhao;Mengnan Jian;Yijian Chen;Yajun Zhao;Lin Mu
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Abstract

Reconfigurable Intelligent Surfaces (RISs) have emerged as a pivotal technology for the Sixth-Generation (6G) communication system, showcasing the ability to configure wireless environment dynamically. Acknowledged as a breakthrough in enhancing network coverage, augmenting system capacity, and facilitating advanced applications such as Integrated Communication and Sensing (ISAC), RISs present a concrete approach to molding the future network evolution. The advancement of RIS technology necessitates a departure from idealistic assumptions and oversimplifications, compelling a progression towards models that more accurately reflect the physical attributes of hardware and the characteristics of propagation. In this paper, we delve into the practical constraints and limitations of current RIS design methodologies, conducting a comprehensive analysis based on the latest technological research advancements and product realizations. Our exploration is broad-ranging, encompassing the engineering challenges of single-point RISs, such as hardware impairments, intricacies of algorithm design, frequency spectrum-specific difficulties. A concentrated discourse is presented on novel near-field channel designs, the restrictions imposed by low-bit quantization, and the intricacies of amplitude-phase correlation constraints. This discussion aims to unearth the challenges, opportunities, and paradigmatic shifts induced by the practical deployment of RISs. The deployment challenges, networking dilemmas, simulation, and product evaluation is provided for RISs in large-scale networks from a broader system perspective. Furthermore, this paper highlights the critical need for accelerated efforts towards the commercialization of RISs. We explore the practical application revolution of RISs, encompassing engineering aspects and standardization processes. Our discussion aims to establish a foundational framework for introducing RISs into the market, acknowledging their significant potential as a game-changing technology in 6G communications.
面向6G的可重构智能路面:工程挑战与未来道路
可重构智能表面(RISs)已经成为第六代(6G)通信系统的关键技术,展示了动态配置无线环境的能力。RISs被认为是增强网络覆盖、增强系统容量和促进集成通信与传感(ISAC)等先进应用的突破,它提出了塑造未来网络演进的具体方法。RIS技术的进步需要从理想主义的假设和过度简化中脱离出来,迫使模型朝着更准确地反映硬件的物理属性和传播特征的方向发展。在本文中,我们深入研究了当前RIS设计方法的实际约束和局限性,并根据最新的技术研究进展和产品实现进行了全面的分析。我们的探索是广泛的,包括单点RISs的工程挑战,如硬件缺陷,算法设计的复杂性,频谱特定的困难。本文集中讨论了新的近场信道设计、低比特量化的限制以及幅相相关约束的复杂性。本讨论旨在揭示由RISs的实际部署所引起的挑战、机遇和范式转变。从更广泛的系统角度,为大规模网络中的RISs提供了部署挑战、网络困境、仿真和产品评估。此外,本文强调了加快RISs商业化努力的迫切需要。我们探索RISs的实际应用革命,包括工程方面和标准化过程。我们的讨论旨在为将RISs引入市场建立一个基本框架,承认它们作为6G通信中改变游戏规则的技术的巨大潜力。
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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