6G新高频无线接入技术的创新与试验  

Innovation and Testing of 6G High Frequency Wireless Access Technology

作  者:彭琳[1] 罗钧 方敏[1] 田珅[1] 张忠皓[2] 李福昌[2] 唐雪[1] Peng Lin;Luo Jun;Fang Min;Tian Kun;Zhang Zhonghao;Li Fuchang;Tang Xue(ZTE Corporation,Beijing 100191,Chi-na;China Unicom Research Institute,Beijing 100048,China)

机构地区:[1]中兴通讯股份有限公司,北京100191 [2]中国联通研究院,北京100048

出  处:《邮电设计技术》2025年第1期21-26,共6页Designing Techniques of Posts and Telecommunications

摘  要:阐述了太赫兹技术成为6G无线接入关键技术所面临的挑战,详细介绍了解决传统太赫兹技术低谱效、高阻塞、非视距(NLOS)等瓶颈问题的技术方案,包括高谱效大带宽实时通信系统、近场自愈合抗阻塞、超表面非视距覆盖等技术试验的初步结果,以推进太赫兹技术向6G新高频无线接入技术的发展进程。It elaborates the challenges faced by terahertz technology as a key technology for 6G wireless access,and provides a detailed overview of solutions to overcome the traditional bottlenecks of THz technology,such as low spectral efficiency,high blockage susceptibility,and non-line-of-sight(NLOS)limitations.These solutions include a high-spectral-efficiency,wideband real time communication system,near-field self-healing anti-blockage mechanisms,and RIS-enabled NLOS coverage.Preliminary results from experimental trials,aiming to advance THz technology toward its integration into 6G high-frequency wireless access systems.

关 键 词:6G新高频 近场移动接入 自愈合 超表面 

分 类 号:TN929.5[电子电信—通信与信息系统]

 

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