Emerging Development of Wireless Localization Technologies Aided with Reconfigurable Intelligent Surfaces: A Comprehensive Survey

Abdulrhman Kh. Alhafid, Y. E. Mohammed Ali, Sedki Younis
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Abstract

Wireless localization technologies have undergone a paradigm shift with the advent of the emerging trend which is the Reconfigurable Intelligent Surfaces (RISs). This paper presents a comprehensive survey of the state-of-the-art RIS-aided localization techniques, exploring the transformative impact of intelligent surfaces on location-based services. The survey comprehensively reviews existing wireless localization methods, ranging from the localization techniques in the wireless communications generations. It addition the challenges posed by conventional localization methods are discussed, including accuracy and coverage issues. In response to these challenges, the incorporation of RIS is explored as a promising paradigm to enhance the precision and reliability of wireless localization. The core of the paper focuses on the integration of RIS into localization systems, highlighting how these RISs can be strategically deployed to enhance accuracy, mitigate multipath effects, integration in different propagation environment and solve non feasible localization problems. The survey encompasses a wide range of applications, including outdoor positioning, indoor positioning, and Internet of Things (IoT) devices, showcasing the versatility of RIS-aided localization across various scenarios. Also, critical design aspects are examined, including propagation regions, hardware requirements, deployment strategies, necessary measurements, multiplexing, and signalling systems.
可重构智能表面辅助无线定位技术的新兴发展:全面调查
随着可重构智能表面(RIS)这一新兴趋势的出现,无线定位技术发生了范式转变。本文全面介绍了最先进的 RIS 辅助定位技术,探讨了智能表面对定位服务的变革性影响。调查全面回顾了现有的无线定位方法,包括无线通信时代的定位技术。此外,还讨论了传统定位方法面临的挑战,包括精度和覆盖范围问题。为了应对这些挑战,本文探讨了将 RIS 作为一种有前途的范例,以提高无线定位的精度和可靠性。论文的核心重点是将 RIS 集成到定位系统中,强调如何战略性地部署这些 RIS 以提高精度、减轻多径效应、集成到不同的传播环境中以及解决不可行的定位问题。调查涵盖了广泛的应用,包括室外定位、室内定位和物联网(IoT)设备,展示了 RIS 辅助定位在各种场景下的多功能性。此外,还研究了关键的设计方面,包括传播区域、硬件要求、部署策略、必要的测量、多路复用和信号系统。
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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