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光电融合智能太赫兹通信与感知

董博宇 迟楠 张俊文 刘胤君 李雅萱 陈亮涛 袁玉琴 韩清钰 平佃元 贾俊连 施剑阳

太赫兹科学与电子信息学报2026,Vol.24Issue(5):521-542,594,23.
太赫兹科学与电子信息学报2026,Vol.24Issue(5):521-542,594,23.DOI:10.11805/TKYDA2025319

光电融合智能太赫兹通信与感知

Intelligent terahertz communication and sensing based on opto-electronic integration

董博宇 1迟楠 1张俊文 1刘胤君 1李雅萱 1陈亮涛 1袁玉琴 1韩清钰 1平佃元 1贾俊连 1施剑阳1

作者信息

  • 1. 复旦大学 电磁波信息科学教育部重点实验室,上海 200433||复旦大学上海低轨卫星通信与应用工程技术研究中心,上海 200433||复旦大学上海市低轨卫星通信技术协同创新中心,上海 200433
  • 折叠

摘要

Abstract

The terahertz(THz)band,characterized by abundant spectral resources,is a key enabler for future ultra-high-speed communication.This work investigates opto-electronic integrated THz technology from the perspectives of system architecture,signal processing,and key device design.Multi-dimensional multiplexing and fully photonic up/down conversion are employed to realize high-capacity fiber-wireless integration.By combining end-to-end intelligent equalization and photonic sensing signal processing,"communication-sensing-intelligence"integration is achieved.Additionally,targeted design of key opto-electronic devices has validated their application potential.Moreover,long-distance,high-capacity,and high-reliability wireless transmission experiments are conducted toward space-air-ground integrated networks,demonstrating strong adaptability and scalability in complex scenarios.The results show that opto-electronic THz technology can fully exploit the potential of high-frequency broadband,providing a core enabler and technical pathway for next-generation communication networks with high capacity,multi-functionality,and ubiquitous coverage.

关键词

太赫兹/光电融合/大容量通信/智能端到端均衡/通信感知一体化/宽带光子器件/长距离大容量传输

Key words

terahertz/opto-electronic integration/high-capacity communication/intelligent end-to-end equalization/Integrated Sensing and Communication(ISAC)/broadband photonic devices/long-distance transmission

分类

信息技术与安全科学

引用本文复制引用

董博宇,迟楠,张俊文,刘胤君,李雅萱,陈亮涛,袁玉琴,韩清钰,平佃元,贾俊连,施剑阳..光电融合智能太赫兹通信与感知[J].太赫兹科学与电子信息学报,2026,24(5):521-542,594,23.

基金项目

国家自然科学基金资助项目(62235005) (62235005)

太赫兹科学与电子信息学报

2095-4980

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