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1.北京理工大学网络空间安全学院,北京 100081
2.北京理工大学信息与电子学院,北京 100081
Received:28 December 2020,
Revised:2022-01-20,
Published:25 February 2022
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安建平,李建国,于季弘等.空天通信网络关键技术综述[J].电子学报,2022,50(02):470-479.
AN Jian-ping,LI Jian-guo,YU Ji-hong,et al.Key Technologies of Space-Air-Ground Communication Networks: A Survey[J].ACTA ELECTRONICA SINICA,2022,50(02):470-479.
安建平,李建国,于季弘等.空天通信网络关键技术综述[J].电子学报,2022,50(02):470-479. DOI: 10.12263/DZXB.20210029.
AN Jian-ping,LI Jian-guo,YU Ji-hong,et al.Key Technologies of Space-Air-Ground Communication Networks: A Survey[J].ACTA ELECTRONICA SINICA,2022,50(02):470-479. DOI: 10.12263/DZXB.20210029.
伴随信息社会向网络化、泛在化、智能化持续发展,现有地面通信网络已经无法支持日益增长的宽带业务需求、泛在海量的物联接入需求、隐蔽可靠的安全传输需求.未来通信网络要求在全球范围内实现既纵深宽广又细致入微的全方位无线接入,其进一步演进亟需突破包括网络架构和空口技术等在内的底层技术.相比于地面通信网络,空天通信网络不受地形的限制,可实现包括海洋、森林、边远地区等的立体全覆盖,可在多维度多层次尺度实现全空间范围内的信息交互,将成为满足海量异构用户泛在连接需求的关键使能技术.本文综述了空天通信网络的关键技术,首先给出了空天通信网络现有系统及未来智慧社会业务的多元化应用场景,然后从空-天-地三网、物理-网络-应用三层、有效传输-资源管理-安全防护三域出发,给出了一种空天通信网络的整体架构.本文随后从组网与接入、物理层以及资源管理与切换等角度出发分别总结了关键技术.最后,本文指出了未来空天通信网络的技术发展挑战和趋势.
With the information society continuously developing towards networking
ubiquity
and intelligence
the existing terrestrial communication network has been unable to supply the increasing demand for broadband services
ubiquitous access
and concealed and reliable transmission. The future communication network requires the realization of all-round wireless access. Its further evolution urgently needs to break through the underlying technologies including network architecture and air interface technology. Compared with the terrestrial communication networks
integrated space-air-ground communication networks can work independently of terrain
and can achieve full coverage including oceans
forests
remote areas
etc. In addition
the information interaction can also be achieved from multiple dimensions. The integrated space-air-ground communication will be one of the key technologies enabling the ubiquitous connection of enormous heterogeneous users. This paper summarizes the key technologies of aerospace communication networks. Firstly
we introduce the existing space-air-ground communication systems and the diversified application scenarios oriented for the future smart society. Secondly
an overall architecture of the integrated space-air-ground communication networks is presented from the perspectives of space-air-ground physical space
physical-network-application network structure
and effective transmission-resource management-security protection technical route. Subsequently
the key technologies are summarized such as networking and multiple access
physical layer and resource management
etc. Finally
the technical challenges and trends of future aerospace communication networks are pointed out.
XU G , SONG Z . Effects of solar scintillation on deep space communications: Challenges and prediction techniques [J]. IEEE Wireless Communications , 2019 , 26 ( 2 ): 10 - 16 .
YU Q , MENG W , YANG M , et al . Virtual multi-beamforming for distributed satellite clusters in space information networks [J]. IEEE Wireless Communications , 2016 , 23 ( 1 ): 95 - 101 .
WANG Y , et al . Multi-resource coordinate scheduling for earth observation in space information networks [J]. IEEE Journal on Selected Areas in Communications , 2018 , 36 ( 2 ): 268 - 279 .
张玲玲 . 简述空天信息传输网络的特点、现状及发展趋势 [J]. 山东工业技术 , 2016 , ( 4 ): 140 .
ZHANG Ling-ling . Briefly describe the characteristics, status quo and development trend of aerospace information transmission network [J]. Shandong Industrial Technology , 2016 , ( 4 ): 140 . (in Chinese)
ZHANG X , ZHU L , LI T , et al . Multiple-user transmission in space information networks: Architecture and key techniques [J]. IEEE Wireless Communications , 2019 , 26 ( 2 ): 17 - 23 .
NAGPAL L , SAMDANI K . Project loon: Innovating the connectivity worldwide [C]// 2017 2nd IEEE International Conference on Recent Trends in Electronics , Information & Communication Technology(RTEICT). Sri Venkateshwara Coll Engn , Bangalore, India : IEEE , 2017 : 1778 - 1784 .
LU H , GUI Y , JIANG X , et al . Compressed robust transmission for remote sensing services in space information networks [J]. IEEE Wireless Communications , 2019 , 26 ( 2 ): 46 - 54 .
Naser Hossein Motlagh , et al . Low-altitude unmanned aerial vehicles-based Internet of things services: Comprehensive survey and future perspectives [J]. IEEE Internet of Things Journal , 2016 , 3 ( 6 ): 899 - 922 .
HUBENKO V P , RAINES R A , MILLS R F , et al . Improving the global information grid's performance through satellite communications layer enhancements [J]. IEEE Communications Magazine , 2006 , 44 ( 11 ): 66 - 72 .
HAMDI M , BOUDRIGA N , OBAIDAT M S . Bandwidth-effective design of a satellite-based hybrid wireless sensor network for mobile target detection and tracking [J]. IEEE Systems Journal , 2008 , 2 ( 1 ): 74 - 82 .
MAINE K , DEVIEUX C , SWAN P . Overview of IRIDIUM satellite network [C]// Proceedings of WESCON'95 . San Francisco, CA, USA : IEEE , 1995 : 483 .
吴建军 , 程宇新 , 梁庆林 , 等 . 面向未来全球化网络的欧洲ISICOM卫星通信概念系统 [J]. 卫星应用 , 2010 , ( 5 ): 59 - 64 .
WU Jian-jun , CHENG Yu-xin , LIANG Qing-lin , et al . European ISICOM satellite communication concept system for future global network [J]. Satellite Applications , 2010 , ( 5 ): 59 - 64 . (in Chinese)
翟立君 , 潘沭铭 , 汪春霆 . 卫星5G技术的发展和展望 [J]. 天地一体化信息网络 , 2021 , 2 ( 1 ): 1 - 9 .
ZHAI Li-jun , PAN Shu-ming , WANG Chun-ting . Development and prospect of satellite 5G technology [J]. Space-Integrated-Ground Information Networks , 2021 , 2 ( 1 ): 1 - 9 . (in Chinese)
ETSI TS 122 261-2018, 5G. Service requirements for next generation new services and markets(V15.6.0; 3GPP TS 22.261 version 15.6.0 Release 15) [S]. 2020 -
杨元喜 . 北斗卫星导航系统的进展、贡献与挑战 [J]. 测绘学报 , 2010 , 39 ( 1 ): 1 - 6 .
YANG Yuan-xi . Progress, contribution and challenges of compass/Beidou satellite navigation system [J]. Acta Geodaetica Et cartographica Sinica , 2010 , 39 ( 1 ): 1 - 6 . (in Chinese)
冯伟 , 唐睿 , 葛宁 . 星地协同智能海洋通信网络发展展望 [J]. 电信科学 , 2020 , 36 ( 10 ): 5 - 15 .
FENG Wei , TANG Rui , GE Ning . Perspectives on coordinated satellite-terrestrial intelligent maritime communication network [J]. Telecommunications Science , 2020 , 36 ( 10 ): 5 - 15 . (in Chinese)
LI Y , WANG S , JIN C , et al . A survey of underwater magnetic induction communications: Fundamental issues, recent advances, and challenges [J]. IEEE Communications Surveys & Tutorials , 2019 , 21 ( 3 ): 2466 - 2487 .
许幼成 , 陈涤非 , 孙强 . 低轨宽带通信卫星应用浅析 [J]. 数字通信世界 , 2020 , ( 2 ): 29 - 30 .
XU You-cheng , CHEN Di-fei , SUN Qiang . Analysis on the application of low-orbit broadband communication satellites [J]. Digital Communication World , 2020 , ( 2 ): 29 - 30 . (in Chinese)
刘悦 . “下一代铱星”系统首批10颗卫星成功发射 [J]. 国际太空 , 2017 , ( 4 ): 52 - 54 .
LIU Yue . The first 10 satellites of iridium next launched successfully [J]. Space International , 2017 , ( 4 ): 52 - 54 . (in Chinese)
林莉 , 左鹏 , 张更新 . 美国OneWeb系统发展现状与分析 [J]. 数字通信世界 , 2018 , ( 9 ): 18 , 22 - 23 .
LIN Li , ZUO Peng , ZHANG Geng-xin . Development situation and analysis of OneWeb system [J]. Digital Communication World , 2018 , ( 9 ): 18 , 22 - 23 . (in Chinese)
孙明欣 . 以信息为中心网络的缓存策略的设计与实现 [D]. 北京 : 北京邮电大学 , 2019 .
SUN Ming-xin . Design and Implementation of Cache Startegy Based on Information Centric Networking [D]. Beijing : Beijing University of Posts and Telecommunications , 2019 . (in Chinese)
YE N , HAN H , ZHAO L , et al . Uplink nonorthogonal multiple access technologies toward 5G: A survey [J]. Wireless Communications and Mobile Computing , 2018 : 1 - 26 .
YE N , LI X , YU H , et al . Rate-adaptive multiple access for uplink grant-free transmission [J]. Wireless Communications and Mobile Computing , 2018 : 1 - 21 .
AN J , YANG K , WU J , et al . Achieving sustainable ultra-dense heterogeneous networks for 5G [J]. IEEE Communications Magazine , 2017 , 55 ( 12 ): 84 - 90 .
Hanxiao YU , Zesong FEI , Congzhe CAO , et al . Analysis of irregular repetition spatially-coupled slotted ALOHA [J]. Sci China Inf Sci , 2019 , 62 ( 8 ): 18 - 30 .
郭铭铭 , 夏文娟 , 窦建华 . 基于QAM载波恢复算法的研究 [J]. 现代电子技术 , 2014 , ( 16 ): 21 - 23 .
GUO Ming-ming , XIA Wen-juan , Dou Jian-hua . Research on QAM-based carrier recovery method [J]. Modern Electronics Technique , 2014 , ( 16 ): 21 - 23 . (in Chinese)
彭钧 , 郭见兵 , 陈东进 . 一种高阶QAM联合载波恢复算法的研究 [J]. 光通信研究 , 2011 , ( 3 ): 20 - 22, 43 .
PENG Jun , GUO Jian-bing , CHEN Dong-jin . Research on a union carrier recovery algorithm for high-order QAM [J]. Study on Optical Communications , 2011 , ( 3 ): 20 - 22, 43 . (in Chinese)
谢秋杨 . 面向卫星通信高阶调制解调16-APSK算法实现研究 [D]. 长沙 : 湖南大学 , 2012 .
XIE Qiu-yang . Realization Research on High Order Modulation and Demodulation Algorithm of 16-APSK for Satellite Communication [D]. Changsha : Hunan University , 2012 . (in Chinese)
梅凡 . 卫星数传系统中16APSK调制解调技术研究 [D]. 北京 : 中国科学院国家空间科学中心 , 2016 .
Mei Fan . The Research of Modulation and Demodulation of 16APSK in Satelliate Data Transmission System [D]. Beijing : Center for Space Science and Applied Research Chinese Academy of Sciences , 2016 . (in Chinese)
宫晓妍 , 刘建伟 , 杨友福 . 基于卫星信道的APSK调制研究 [J]. 遥测遥控 , 2009 , ( 6 ): 12 - 16 .
GONG Xiao-yan , LIU Jian-wei , YANG You-fu . Analysis of APSK modulation based on satellite channel [J]. Journal of Telemetry, Tracking, and Command , 2009 , ( 6 ): 12 - 16 . (in Chinese)
European Telecommunications Standards Institute . Digital video broadcasting(dvb); second generation framing structure, channel coding and modulation systems for broadcasting, interactive services, news gathering and other broadband satellite applications(DVB-S2X):ETSI Standard EN 302 307-2 V1.1.1 [S/OL]. [ 2020-12 ]. https://www.etsi.org/deliver/etsi_en/302300_302399/302307/01.01.01_20/en_302307v010101c.pdf?msclkid=52cd74f4a81c11ec84fe9ebd30fda0dd https://www.etsi.org/deliver/etsi_en/302300_302399/302307/01.01.01_20/en_302307v010101c.pdf?msclkid=52cd74f4a81c11ec84fe9ebd30fda0dd
SANCTIS M , CIANCA E , ROSSI T , et al . Waveform design solutions for EHF broadband satellite communications [J]. IEEE Communications Magazine , 2015 , 53 ( 3 ): 18 - 23 .
THOMPSON Steve C , AHMED Ahsen U , PROKIS John G , et al . Constant envelope OFDM [J]. IEEE Transactions on Communications , 2008 , 56 ( 8 ): 1300 - 1312 .
MULINDE R , RAHMAN T F , SACCHI C . Constant-envelope SC-FDMA for nonlinear satellite channels [C]// GLOBECOM 2013 . Atlanta, GA, USA : IEEE , 2013 : 2939 - 2944 .
袁伟杰 , 李双洋 , 种若汐 , 等 . 面向6G物联网的分布式译码技术 [J]. 电子与信息学报 , 2021 , 43 ( 1 ): 21 - 27 .
YUAN Wei-jie , LI Shuang-yang , ZHONG Ruo-xi , et al . A distributed decoding algorithm for 6G Internet-of-things networks [J]. Journal of Electronics and Information Technology , 2021 , 43 ( 1 ): 21 - 27 . (in Chinese)
WANG B , CHEN P , FANG Y , et al . The design of vertical RS-CRC and LDPC code for ship-based satellite communications on-the-move [J]. IEEE Access , 2019 , 7 : 44977 - 44986 .
WANG H , KIM S . Design of polar codes for run-length limited codes in visible light communications [J]. IEEE Photonics Technology Letters , 2018 , 31 ( 1 ): 27 - 30 .
TROFIMIUK G , IAKUBA N , RETS S , et al . Fast block sequential decoding of polar codes [J]. IEEE Transactions on Vehicular Technology , 2020 , 69 ( 10 ): 10988 - 10999 .
FAYYAZ U U . Symbol mapping design for bit-interleaved polar-coded modulation with iterative decoding [J]. IEEE Communications Letters , 2018 , 23 ( 1 ): 32 - 35 .
LIU J , SHI Y , FADLULLAH Z M , et al . Space-air-ground integrated network: A survey [J]. IEEE Communications Surveys & Tutorials , 2018 , 20 ( 4 ): 2714 - 2741 .
陈娅婷 . 空天地一体化网络无线资源管理与传输协议优化研究 [D]. 北京 : 北京交通大学 , 2019 .
CHEN Ya-ting . Research on Wireless Resource Management and Transmission Protocol Optimization for Space-Air-Ground Integrated Network [D]. Beijing : Beijing Jiaotong University , 2019 . (in Chinese)
ZHANG N , ZHANG S , YANG P , et al . Software defined space-air-ground integrated vehicular networks: Challenges and solutions [J]. IEEE Communications Magazine , 2017 , 55 ( 7 ): 101 - 109 .
胡延楠 . 软件定义网络关键技术及相关问题的研究 [D]. 北京 : 北京邮电大学 , 2015 .
HU Yan-nan . Research on Key Technologies and Related Problems in Software-defined Networks [D]. Beijing : Beijing University of Posts and Telecommunications , 2015 . (in Chinese)
靳瑾 , 李娅强 , 张晨 , 等 . 全球动态场景下非静止轨道通信星座干扰发生概率和系统可用性 [J]. 清华大学学报(自然科学版) , 2018 , ( 9 ): 833 - 840 .
JIN Jin , LI Ya-qiang , ZHANG Chen , et al . Occurrence probability of co-frequency interference and system availability of non-geostationary satellite system in global dynamic scene [J]. Journal of Tsinghua University(Science and Technology) , 2018 , ( 9 ): 833 - 840 . (in Chinese)
李伊陶 . 基于LEO-MSS的多层扩展网络场景下的资源分配和切换优化 [D]. 合肥 : 中国科学技术大学 , 2020 .
LI Yi-tao . Resource Allocation and Handover Optimization Based on Extensible Multi-layer LEO-MSS [D]. Hefei : University of Science and Technology of China , 2020 . (in Chinese)
GRACE D , CHEN G , WHITE G P , et al . Improving the system capacity of mm-wave broadband services using multiple high altitude platforms [C]// IEEE Global Telecommunications Conference . San Francisco, CA, USA : IEEE , 2003 : 169 - 173 .
IBRAHIM A , ALFA A S . Using Lagrangian relaxation for radio resource allocation in high altitude platforms [J]. IEEE Transactions on Wireless Communications , 2015 , 14 ( 10 ): 5823 - 5835 .
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