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面向星地融合的激光通信:研究现状、关键技术与未来展望

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卫星激光通信利用波长更短的激光作为信息载体进行数据传输,能够实现比射频通信更高的传输速率;光波段的频谱资源丰富,具备比射频通信更大的带宽;此外,激光束的高度定向性和窄波束特性使激光难以被拦截和窃听.卫星激光通信凭借高速率、高带宽、高安全性以及频谱资源丰富等特点,已成为6G星地融合网络发展的重要支撑技术.总结面向星地融合的激光通信国内外研究现状,重点分析卫星激光通信瞄准捕获跟踪、调制与编码、交换与路由以及激光与射频协作等关键技术,并展望相应关键技术的未来发展方向,为我国未来研究和发展面向星地融合网络的激光通信技术提供参考.
Laser Communications for Satellite-Terrestrial Integration:Research Status,Key Technologies,and Future Prospects
Satellite laser communication uses laser with shorter wavelength as the information carrier for data transmission,which can achieve a higher data transmission rate than RF communication.With an abundant spectrum resource of in optical band,the laser com-munication has a larger bandwidth than RF communication.Besides,because of the highly directional and narrow beam characteristics of the laser beam,it is difficult to intercept and eavesdrop the laser links.Satellite laser communication,with its characteristics of high speed,high bandwidth,high security,and abundant spectrum resources,has become an important supporting technology for the devel-opment of future 6G satellite-terrestrial integration networks.This paper summarized the current research status of laser communication for satellite-terrestrial integration both domestically and internationally,with a focus on key technologies such as satellite laser commu-nication pointing,acquisition,and tracking,modulation and coding,switching and routing,and laser-radio frequency cooperation.The future development directions of corresponding key technologies were also discussed,provided direction reference for future research and development of laser communication technology for satellite-terrestrial integration networks in China.

satellite-terrestrial integration networksatellite laser communicationlaser-radio frequency cooperation

袁仁智、郭嘉、姚海峰、陈之北、李玉钗、孙耀华、彭木根

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北京邮电大学网络与交换技术全国重点实验室,北京 100876

北京理工大学光电学院,北京 100080

空间光电技术国家地方联合工程研究中心,吉林 长春 130000

星地融合网络 卫星激光通信 激光与射频协作

2024

天地一体化信息网络

天地一体化信息网络

CSTPCD
ISSN:
年,卷(期):2024.5(4)