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面向星地融合的6G云雾化自组网

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低轨星座朝支持星上处理、功能可重构、星地协作和通信遥感导航控制等多任务一体化的方向演进,受限于星上信号处理和计算能力不足、星间链路容量不宽等瓶颈,迫切需要和具有强大云化处理与计算能力的陆地移动通信网络深度融合.为此,提出了面向星地融合的6G云雾化自组网的体系架构和协议体系,实现了低轨雾化卫星网络和陆地云化通信网络的协同融合,研究了基于星上雾化处理的通信遥感导航控制一体化波形和资源管理,以及云雾化协同的移动性管理和智能信息处理等关键技术,展望了未来的标准化工作和硬件试验.
Toward satellite-terrestrial integration:6G cloud-fog collaborative self-organizing network
Low earth orbit(LEO)satellite constellations are evolving to support on-board processing,reconfigurable functions,satellite-terrestrial cooperation,and the coordinated execution of multiple tasks,including communication,sensing,navigation,and control.However,LEO satellite networks are constrained by bottlenecks such as inadequate signal processing and computing capabilities of individual LEO satellites and constrained inter-satellite link capacity,necessitating a deep integration with terrestrial mobile communication networks that include extensive cloud-based processing and computing capabilities.Therefore,an innovative architecture for an integrated satellite-terrestrial-based 6G cloud-fog collaborative self-organizing network was proposed and its protocols were discussed,achieving the deep integration of LEO fog-based satellite networks and terrestrial cloud-based communication networks.In addi-tion,key technologies such as integrated communication,sensing,navigation,and control waveform,as well as re-source management based on satellite onboard fog processing,along with mobility management and intelligent infor-mation processing based on cloud-fog collaboration,were elaborated in detail.In the end,insights into future direc-tions for standardization and hardware experimentation were presented.

satellite-terrestrial integrated network6Gcloud-fog collaborationself-organizing network

彭木根、袁硕

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北京邮电大学,北京 100876

星地融合网络 6G 云雾化 自组网

国家重点研发计划国家自然科学基金北京市自然科学基金

2021YFB290020061925101L223007

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(3)
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