浏览全部资源
扫码关注微信
1. 北京邮电大学网络与交换技术全国重点实验室,北京 100876
2. 国网思极位置服务有限公司,北京 102209
[ "张雨曼(2002- ),女,北京邮电大学硕士生,主要研究方向为天地一体化网络切片技术" ]
[ "朱厦(1984- ),女,博士,国网思极位置服务有限公司首席卫星专家、数字空间事业部总经理、高级工程师,主要研究方向为卫星遥感、低轨卫星通信、通导遥一体化" ]
[ "梁国鑫(2001- ),女,北京邮电大学硕士生,主要研究方向为基于高精度时空预测的信号捕获与跟踪" ]
[ "周家恩(2001- ),男,北京邮电大学博士生,主要研究方向为卫星通感算一体化技术" ]
[ "赵亚飞(1987- ),男,博士,北京邮电大学特聘副研究员、博士生导师,主要研究方向为空天地海信息通信和通感算融合" ]
[ "彭木根(1978- ),男,博士,北京邮电大学网络与交换技术全国重点实验室教授,主要研究方向为空间信息通信、通感算一体化、雾无线接入网络等" ]
网络出版日期:2024-01,
纸质出版日期:2024-01-20
移动端阅览
张雨曼, 朱厦, 梁国鑫, 等. 面向天地一体化的确定性网络技术研究[J]. 电信科学, 2024,40(1):24-34.
Yuman ZHANG, Xia ZHU, Guoxin LIANG, et al. Research on deterministic networking technology for space-ground integrated[J]. Telecommunications science, 2024, 40(1): 24-34.
张雨曼, 朱厦, 梁国鑫, 等. 面向天地一体化的确定性网络技术研究[J]. 电信科学, 2024,40(1):24-34. DOI: 10.11959/j.issn.1000-0801.2024010.
Yuman ZHANG, Xia ZHU, Guoxin LIANG, et al. Research on deterministic networking technology for space-ground integrated[J]. Telecommunications science, 2024, 40(1): 24-34. DOI: 10.11959/j.issn.1000-0801.2024010.
卫星通信是未来通信领域的关键技术,低轨互联网星座是6G空天地海一体化网络的战略性基础设施,能够将当前通信网络扩展到全球近地区域。确定性网络技术是天基网络的重要技术之一,相比传统尽力而为的分组网络,确定性网络具有低时延、低抖动、低丢包率、高可靠的优势。概述了确定性网络当前的研究背景及现状,提出面向卫星通信的确定性网络架构,阐述了其关键技术,最后讨论了未来研究方向。
Satellite communication is a critical technology in the future of the communication field.Low earth orbit Internet constellations is a strategic infrastructure for the 6G integrated space-air-ground-maritime networks
which is capable of expanding the current communication network to the global near-earth region.Deterministic networking technology is a key component of space-based network
compared with the traditional best-effort packet network
it has the advantages of low latency
low jitter
low packet loss rate
and high reliability.Firstly
the current research background and status of deterministic networking were summarized
and then a deterministic networking architecture for satellite communications was proposed and its key technologies were described.Finally
the outlook for future research directions was discussed.
赵亚飞 , 周家恩 , 王鑫洋 , 等 . 面向卫星通信的6G雾计算网络技术研究与展望 [J ] . 无线电通信技术 , 2023 , 49 ( 5 ): 834 - 841 .
ZHAO Y F , ZHOU J E , WANG X Y , et al . Research and prospect of 6G fog computing network for satellite communication [J ] . Radio Communications Technology , 2023 , 49 ( 5 ): 834 - 841 .
谭炜骞 , 吴斌伟 , 汪硕 . 确定性网络跨域传输架构与DRL流量调度算法 [J ] . 北京邮电大学学报 , 2023 , 46 ( 3 ): 37 - 42 .
TAN W Q , WU B W , WANG S . Cross-domain deterministic networking architecture and DRL flow scheduling [J ] . Journal of Beijing University of Posts and Telecommunications , 2023 , 46 ( 3 ): 37 - 42 .
石涵琛 , 杨闯 , 彭木根 . 6G太赫兹通信:架构、技术与挑战 [J ] 电波科学学报 , 2023 , 12 ( 26 ): 1 - 20
SHI H C , YANG C , PENG M G . Terahertz communication for 6G:architectures,technologies and challenges [J ] . Chinese Journal of Radio Science , 2023 , 12 ( 26 ): 1 - 20 .
ZHOU J E , SUN Z Z , ZHANG R H , et al . A cloud-edge collaboration CNN-based routing method for ISAC in LEO satellite networks [C ] // Proceedings of the 2nd Workshop on Integrated Sensing and Communications for Metaverse . New York:ACM Press , 2023 : 25 - 29 .
景毅 , 姜春晓 , 詹亚锋 . 面向卫星通信的 6G 通感算融合架构、技术与挑战 [J ] . 无线电通信技术 , 2023 , 49 ( 1 ): 12 - 20 .
JING Y , JIANG C X , ZHAN Y F . 6G communication,sensing and computing integration for satellite communication:architectures,technologies and challenges [J ] . Radio Communications Technology , 2023 , 49 ( 1 ): 12 - 20 .
汪硕 , 王佳森 , 蔡磊 , 等 . 面向工业制造的确定性网络技术发展研究 [J ] . 中国工程科学 , 2021 , 23 ( 2 ): 22 - 29 .
WANG S , WANG J S , CAI L , et al . Development of deterministic networking techniques for industrial manufacturing [J ] . Strategic Study of CAE , 2021 , 23 ( 2 ): 22 - 29 .
强鹂 , 刘冰洋 , 于德雷 , 等 . 大规模确定性网络转发技术 [J ] . 电信科学 , 2019 , 35 ( 9 ): 12 - 19 .
QIANG L , LIU B Y , YU D L , et al . Large-scale deterministic network forwarding technology [J ] . Telecommunications Science , 2019 , 35 ( 9 ): 12 - 19 .
黄韬 , 汪硕 , 黄玉栋 , 等 . 确定性网络研究综述 [J ] . 通信学报 , 2019 , 40 ( 6 ): 160 - 176 .
HUANG T , WANG S , HUANG Y D , et al . Survey of the deterministic network [J ] . Journal on Communications , 2019 , 40 ( 6 ): 160 - 176 .
ZHANG M . Flex Ethernet technology and application in 5G mobile transport network [J ] . China Communications , 2021 , 18 ( 2 ): 250 - 258 .
NASRALLAH A , S.THYAGATURU A , ALHARBI Z , et al . Ultra-low latency (ULL) networks:The IEEE TSN and IETF DetNet standards and related 5G ULL research [J ] . IEEE Communications Surveys & Tutorials , 2019 , 21 ( 1 ): 88 - 145 .
朱瑾瑜 , 张恒升 , 陈洁 . TSN与5G融合部署的需求和网络架构演进 [J ] . 中兴通讯技术 , 2021 , 27 ( 6 ): 47 - 52 .
ZHU J Y , ZHANG H S , CHEN J . Requirements and network architecture evolution of TSN and 5G integrated deployment [J ] . ZTE Technology Journal , 2021 , 27 ( 6 ): 47 - 52 .
JIN X , XIA C Q , GUAN N , et al . Real-time scheduling of massive data in time sensitive networks with a limited number of schedule entries [J ] . IEEE Access , 2020 ( 8 ): 6751 - 6767 .
PENG G Y , WANG S , HUANG Y D , et al . Traffic shaping at the edge:enabling bounded latency for large-scale deterministic networks [C ] // Proceedings of the 2021 IEEE International Conference on Communications Workshops (ICC Workshops) . Piscataway:IEEE Press , 2021 : 1 - 6 .
薛兵兵 , 许勇刚 , 马靖 , 等 . 确定性网络技术及在电力行业的应用研究 [J ] . 网络安全技术与应用 , 2023 ( 5 ): 119 - 124 .
XUE B B , XU Y G , MA J , et al . Research on deterministic network technology and its application in power industry [J ] . Network Security Technology & Application , 2023 ( 5 ): 119 - 124 .
魏月华 , 喻敬海 , 罗鉴 . 确定性网络技术及应用场景研究 [J ] . 中兴通讯技术 , 2020 , 26 ( 4 ): 67 - 72 .
WEI Y H , YU J H , LUO J . Deterministic networking technology and scenarios [J ] . ZTE Technology Journal , 2020 , 26 ( 4 ): 67 - 72 .
傅海波 . “星链” 计划给国际通信运营商带来的挑战和机遇 [J ] . 通信技术 , 2022 , 55 ( 10 ): 1363 - 1367 .
FU H B . Challenges and opportunities to international telecommunication carriers brought by the starlink [J ] . Communications Technology , 2022 , 55 ( 10 ): 1363 - 1367 .
LIN X Q , CIONI S , CHARBIT G , et al . On the path to 6G:embracing the next wave of low earth orbit satellite access [J ] . IEEE Communications Magazine , 2021 , 59 ( 12 ): 36 - 42 .
徐菁 . “鸿雁”星座闪亮亮相,移动通信或将全球无缝覆盖 [J ] . 中国航天 , 2018 ( 11 ): 35 - 36 .
XU J . The “Wild Goose” constellation shines,mobile communications or seamless global coverage [J ] . Aerospace China , 2018 ( 11 ): 35 - 36 .
陈静 . 虹云工程首星 [J ] . 卫星应用 , 2019 ( 3 ): 77 .
CHEN J . The first star of Hongyun Project [J ] . Satellite Application , 2019 ( 3 ): 77 .
李晓尧 . 低轨卫星网络计算与通信资源联合优化技术研究 [D ] . 北京:北京邮电大学 , 2022 .
LI X Y . Computing and communication resources optimization for low earth orbit satellite network [D ] . Beijing:Beijing University of Posts and Telecommunications , 2022 .
张荻 . 卫星通信跨层资源管理算法研究 [D ] . 北京:北京邮电大学 , 2018 .
ZHANG D . Research on cross-layer resource management algorithm in satellite communications [D ] . Beijing:Beijing University of Posts and Telecommunications , 2018 .
冯建元 , 李杰 , 庞立新 , 等 . 天地一体化信息网络中天基卫星网络架构设计 [J ] . 电讯技术 , 2019 , 59 ( 7 ): 775 - 779 .
FENG J Y , LI J , PANG L X , et al . Architecture design of satellite networks in integrated terrestrial-satellite network [J ] . Telecommunication Engineering , 2019 , 59 ( 7 ): 775 - 779 .
汪春霆 , 李宁 , 翟立君 , 等 . 卫星通信与地面5G的融合初探(一) [J ] . 卫星与网络 , 2018 ( 9 ): 14 - 21 .
WANG C T , LI N , ZHAI L J , et al . Discussion on the integration of satellite communication and ground 5G (I) [J ] . Satellite& Network , 2018 ( 9 ): 14 - 21 .
彭会湘 , 陈金勇 , 杨斌 , 等 . 6G 通信时代的卫星遥感系统展望 [J ] . 无线电工程 , 2020 , 50 ( 7 ): 523 - 529 .
PENG H X , CHEN J Y , YANG B , et al . Prospect of satellite remote sensing system in 6G communication [J ] . Radio Engineering , 2020 , 50 ( 7 ): 523 - 529 .
0
浏览量
305
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构