期刊文献+

国内外星群测控的研究现状及关键技术 被引量:4

Research Status and Key Technologies of Satellite Cluster TT&C at Home and Abroad
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摘要 给出了星群的概念及优势,指出了星群应用模式给测控带来的新问题。通过跟踪国内外典型的星群研究及应用情况,分析对比了星群应用中星间相对测量和网络技术的国内外研究现状及差距。最后,提出了一种星群测控体系,并对其中亟需解决的关键技术问题进行了论述。 The concept and advantages of satellite cluster are given, and the new problems of TT&C arising from the application mode of satellite cluster are pointed out. By summarizing the typical research and ap-plication of satellite cluster at home and abroad, the research status and gaps of inter-satellite relative measurement and space internet are compared. Finally, a system of satellite cluster TT&C is proposed, and the key technical problems to resolved are discussed.
作者 杨红生
出处 《电讯技术》 北大核心 2013年第12期1643-1648,共6页 Telecommunication Engineering
关键词 星群 测控 自主运行 星间相对测量 空间互联网 satellite cluster TT&C autonomy inter-satellite relative measurement space internet
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参考文献9

  • 1Luu K,Schlossberg H. University nanosatellite distributed satellite capabilities to support techSat 21[A].Utah,USA:AIAA,1999.1-9.
  • 2刘豪,梁巍.美国国防高级研究计划局F6项目发展研究[J].航天器工程,2010,19(2):92-98. 被引量:29
  • 3Bertiger W,Bar-Sever Y,Bettadpur S. GRACE:Millimeters and Microns in Orbit[A].Portland:ION,2002.2022-2029.
  • 4Zenick R,Kohlhepp K. GPS Micro Navigation and Com-munication System for Clusters of Micro and Nanosatel-lites[A].Big Sky:IEEE,2001.2515-2522.
  • 5Gunnam K K,Hughes D C,Junkins J L. Vision-Based DSP Embedded Navigation Sensor[J].IEEE Sen-sor Journal,2002,(5):428-442.
  • 6Tien J Y,Srinivasan J M,Young J E. Formation Acqui-sition Sensor for the Terrestrial Planet Finder(TPF)Mission[A].Big Sky,MT:IEEE,2004.2680-2690.
  • 7Purcell G,Kuang D,Lichten S. Autonomous For-mation Flyer(AFF)Sensor Technology Development[A].Columbia,Wash-ington DC:NASA,1998.1-121.
  • 8Gill E,Steckling M,Butz P. Gemini:A Milestone towards Autonomous Formation Flying[A].Noordwijk:ESTEC,2001.1-4.
  • 9沈荣骏.我国天地一体化航天互联网构想[J].中国工程科学,2006,8(10):19-30. 被引量:131

二级参考文献16

  • 1Bhasin K,Hayden J L.Developing architectures and technologies for an evolvable NASA space communication infrastructure[Z].2004
  • 2Bhasin K,Hayden J L.Space internet architectures and technologies for NASA enterprises[Z]
  • 3Israel D,Parise R,Hogie K,Ed Criscuolo.Demonstration of Internet technologies for space communication[Z].2003
  • 4Malakooti B.Roadmap for Developing ReconfigurableIntelligent Internet Rotocols for Space Communication Networks[R].2004
  • 5Israel D,et al.STS-107 case study:end-to-end IP space communication architecture[A].Ground Systems Architectures Workshops (GSAW) 2003[C].Manhattan Beach CA,March 2003
  • 6Bergamo M A.High-throughput distributed spacecraft network:architecture and multiple access technologies[Z].Computer Networks,2004
  • 7Stanford University.Embracing uncertainty. http://aa.stanford.edu/aerostro/50th/presentations/Brown.pdf . 2008
  • 8Brown O.The value proposition for fractionated space architectures. AIAA- 2006-7506 .
  • 9Golding R,Wong T.Adaptive distributed computing for fractionated space systems. http://www.chrysaetos.org/papers/F6workshop.pdf . 2006
  • 10Ivancic W.Space Internet technologies at Glenn Re-search Center. http://www.cisco.com/web/strategy/docs/gov/space-glenn.pdf . 2006

共引文献156

同被引文献51

  • 1王佳,俞信.自由空间光通信技术的研究现状和发展方向综述[J].光学技术,2005,31(2):259-262. 被引量:30
  • 2任放,赵和平.CCSDS邻近空间链路协议的初步探究[J].北华航天工业学院学报,2007,17(5):3-6. 被引量:10
  • 3吴国强,孙兆伟,赵丹,张伟清.编队小卫星星间通信系统的发展和趋势[J].哈尔滨工业大学学报,2007,39(11):1699-1703. 被引量:12
  • 4Leitner J A. Spacecraft formation flying - an overview of missions and technology challenges, AAS 07-031 [ R]. Washington : AAS,2007.
  • 5王世练,张尔扬.CCSDSProximity-1及其在编队飞行小卫星群中的应用[J].第十二届全国遥测遥控技术年会论文集,2002:38-43.
  • 6Chien-Chung Shen, Sundaram Rajagopalan, et al. A flexi- ble routing architecture for ad hoc space networks [ J ]. Computer Networks, 2004,46 : 389 -410.
  • 7许辉,吴诗其.采用超宽带UWB技术的编队飞行星际链路研究[C].2005,242-246.
  • 8Michael A Koets, Mark Tapley, et al. Enabling fractiona- ted spacecraft communications using F6WICS [ C ]. 2012 IEEE Military Communications Conference, MILCOM 2012, Orlando, FL, United states, November 1,2012 - November 1,2012.
  • 9Michel, Tony; Thapa, Bishal; Taylor, Steve. 802. 11 s based multi-radio multi-channel mesh networking for fractionated spacecraft[ C]. 2013 IEEE Aerospace Con- ference, AERO 2013, Big Sky, MT, United states, March 2,2013 - March 9,2013.
  • 10Tanya Vladimirova, Kawsu Sidibeh. WLAN for earth ob- servation datellite formations in LEO [ C ]. In: Proc of Bio-inspired,Learning and Intelligent Systems for Securi- ty,,2008,119-124.

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