首页|面向6G的高速太赫兹无线通信系统与关键技术验证

面向6G的高速太赫兹无线通信系统与关键技术验证

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太赫兹通信以其可提供更高速、更大容量和更安全的数据传输的独特优势,在未来6G中成为重要的关键技术之一。基于固态电子的太赫兹通信系统存在带宽受限、频谱响应不平坦等问题,需要先进的信号形式结合灵活高效的处理方法来提升系统性能。搭建了基于固态电子的G波段太赫兹无线通信系统,通过采用比特-功率加载的离散多音(Bit and Power Loading-Discrete Multitone,BPL-DM)调制技术,实现了对系统频谱资源的有效利用;通过对通信速率的灵活调整、自适应削波和基于三阶多项式的后均衡技术,解决了峰值功率约束带来的挑战,提升了整体传输性能,实现了在195 GHz中心频率下,单通道130 Gbit/s的通信线路速率。基于以上技术,为进一步提升系统容量,搭建了 4x4的多输入多输出(Multiple-Input Multiple-Output,MIMO)太赫兹通信系统,总线路速率超过399 Gbit/s。
High Speed Terahertz Wireless Communication System and Key Technology Verification for 6G
In future 6G,terahertz communication will become one important key technology due to its unique advantages of provi-ding faster speed,larger capacity,and safer data transmission.However,terahertz communication systems based on solid-state electronics have issues such as bandwidth limitations and uneven spectrum,requiring advanced signal forms combined with flexible and efficient processing methods to improve system performance.In this study,a G-band terahertz wireless communication system based on solid-state electronics was constructed.To address these challenges,the use of discrete multitone modulation with Bit and Power Loading-Discrete Multitone(BPL-DM)Technology was implemented,enabling effective utilization of system spectrum resources and flexible adjustment of data rate.Adaptive clipping and post-equalization technology based on third-order polynomials were employed to overcome peak power constraints,thereby improving overall transmission performance.Experimental verification achieved a single channel line data rate of 130 Gbit/s at a center frequency of 195 GHz.Based on these technologies,a 4x4 Multiple-Input Multiple-Output(MIMO)terahertz communication system was developed in order to enhance system capacity,attaining a total line speed of over 399 Gbit/s.

terahertz wireless communicationMIMOdiscrete multitone modulationbit power loadingadaptive clipping

董博宇、冯叶青、李国强、贾俊连、张俊文、付杰尉、迟楠、朱伏生

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复旦大学电磁波信息科学教育部重点实验室,上海 200433

广东省新一代通信与网络创新研究院,广东广州 510663

太赫兹无线通信 多输入多输出 离散多音调制 比特-功率加载 自适应削波

国家自然科学基金国家自然科学基金国家自然科学基金上海市自然科学基金

62235005621711376192510421ZR1408700

2024

无线电通信技术
中国电子科技集团公司第五十四研究所

无线电通信技术

北大核心
影响因子:0.745
ISSN:1003-3114
年,卷(期):2024.50(1)
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