首页|RIS辅助的无线通信:原型验证与实测进展

RIS辅助的无线通信:原型验证与实测进展

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智能超表面(reconfigurable intelligent surface,RIS)具备以低功耗、低成本提升通信传输速率的特点,被视为6G的关键技术之一,近年来受到广泛关注.综述了RIS辅助的无线通信系统的信道测量进展,介绍了时域和频域测量系统的大致原理,并对大尺度衰落模型、小尺度衰落模型和信道互易性的原型验证工作进行了总结.进而,综述了RIS硬件特性方面的测量进展,分析了有源RIS以及RIS的功耗、比特数和极化等特性.此外,总结了RIS覆盖增强的测量进展,介绍了RIS的部署位置、相位设计和信道的有效秩对覆盖增强性能的影响.最后,展望了RIS辅助无线通信原型验证与实际测量的未来研究方向和可能面临的挑战.
RIS-assisted wireless communications:prototype validation and measurement progress
In recent years,reconfigurable intelligent surface(RIS)is regarded as one of the promising technologies for 6G because of low power consumption,low cost and the ability to improve communication transmission rate.The progress in measurements for RIS-assisted wireless communication systems was reviewed,with the time-domain and frequency-domain measurement systems introduced.The prototype verification for large-scale fading models,small-scale fading models and channel reciprocity were summarized.Then,the advancements in measuring RIS hardware was reviewed,characteristics were concluded in power consumption,bit levels,polarization,and active RIS.Further-more,the measurement on RIS coverage enhancement were summarized,introducing the impact of deployment loca-tions,phase design,and effective rank on performance of coverage enhancement.Finally,future research directions and potential challenges faced by practical RIS measurements were discussed.

RISchannel measurementhardware characteristiccoverage enhancement

杨辰泓、桑健、李潇、唐万恺、金石

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东南大学移动通信国家重点实验室,江苏 南京 210096

智能超表面 信道测量 硬件特性 覆盖增强

国家自然科学基金资助项目江苏省自然科学基金资助项目

62231009BK20211511

2024

电信科学
中国通信学会 人民邮电出版社

电信科学

CSTPCD北大核心
影响因子:0.902
ISSN:1000-0801
年,卷(期):2024.40(7)