期刊文献+

多自由度气浮仿真试验台的研究与发展 被引量:14

Research and Development of Air Bearing Spacecraft Simulator on the Multiple Degrees of Freedom
下载PDF
导出
摘要 气浮台仿真是卫星等航天器地面仿真试验的一种重要手段,其中多自由度气浮仿真试验台可以用来研究航天器的编队飞行、轨道机动和空间交会等问题。文中对国内外近几年多自由度气浮仿真试验台的研究状况进行了较详细的介绍,归纳总结了当前的研究热点和发展趋势,旨在为我国相关技术研究人员提供更多的参考和借鉴。 Air bearing spacecraft simulator is an important means of ground physical simulation, and the multiple degrees of freedom air bearing spacecraft simulator (MDOFABSS) can be used to simulate flying formation, orbit maneuver, and rendezvous of spacecraft. In this paper, firstly the study on MDOFABSS both civil and abroad is presented in detail, and then research hotspots and development trend are proposed, which will provide references and inspirations for development of MDOFABSS in China.
出处 《航天控制》 CSCD 北大核心 2009年第6期96-101,共6页 Aerospace Control
关键词 全物理仿真 气浮轴承 姿态控制 编队飞行 轨道机动 Full physical simulation Air bearing Attitude control Flying formation Orbit maneuver
  • 相关文献

参考文献11

  • 1李季苏,牟小刚,张锦江.卫星控制系统全物理仿真[J].航天控制,2004,22(2):37-41. 被引量:27
  • 2Schwartz J L, Peck M A, Hall C D. Historical Review of Spacecraft Simulator[ J]. Advances in the Astronauti- cal Sciences, 2003, 114: 405-423.
  • 3Spencer M G. , Chernesky V, Baker J, et al. Bifocal Relay Mirror Experiments on the NPS Three Axis Spacecraft Simulator[ C ]//AIAA Guidance, Navigation, and Control Conference and Exhibit, Monterey, California, 2002 -5031.
  • 4Schwartz J L. The Distributed Dpacecraft Attitude Control System Simulator-from Design Concept to Decentralized Control [ D ]. Virginia Polytechnic Institute and State University, 2004.
  • 5Wilt G. Down-to-earth Testing of Microsatellites[ EB/OL]. [ 2007-03-09 ] https ://www. llnl. gov/str/Ledebuhr, html.
  • 6Veres S M, Lincoln N K, Gabriel Steve B. Testbed for Satellite Formation Flying Control System Verfication [ C ]//AIAA InfoTech at Aerospace Conference, Rohnert Park, CA, United States, 2007: 2382-2392.
  • 7Astrium. Microsim Hardware User Manual & Interface Description[ M ]. MSim-AST-MAN-02, 2003.
  • 8Scharf D P, Hadaegh F Y, Keim J A. , et al. Flightlike Ground Demonstration of Precision Formation Flying Spacecraft [ C ]//Techniques and Instrumentation for Detection of Exoplanets Ⅲ, San Diego, CA, United States, 2007: 701-712.
  • 9李季苏,牟小刚,张锦江,王晓磊,宗红,孙宝祥.气浮台在卫星控制系统仿真中的应用[J].航天控制,2008,26(5):64-68. 被引量:15
  • 10孔令云,周凤岐.用三轴气浮台进行混沌控制与反控制研究[J].宇航学报,2007,28(1):99-102. 被引量:10

二级参考文献13

  • 1周军.挠性结构的变结构控制和实验研究[R]博士后研究报告[R].中国空间技术研究院北京控制工程研究所,1995年8月..
  • 2张锦江.大型航天器SGCMG系统优化设计及仿真研究[R]博士后研究报告[R].中国空间技术研究院北京控制工程研究所,2001..
  • 3CHEN G R,LAI D.Feed black anti-control of discrete chaos[J].Int.J.Bifur.Chaos,1998(7):1585-1590
  • 4Yang Z,LIU Y Z,CHEN G R.Chaotifying a continous-time system via impulsive input[J].Int.J.Bifur.Chaos,2002,12(5):1121-1128]
  • 5WANG X F,CHEN G R,YU X.Anti-control of chaos in continous-time systems via time-delay feedback[J].Chaos,2000,10(4):771-779
  • 6Beletsky V V,Pivovarov M L,Starostin E L.Regular and chaotic motions in applied dynamics of a rigid body,Chaos,1996,6(2):155-166
  • 7CHEN L Q,LIU Y Z.Chaotic attitude motion of a magnetic rigid spacecraft and its control[J].International Journal of Nonlinear Mechanics,2002,37(3):493-504
  • 8Alban P M Tsui,Antonia J Jones.The control of higher dimensional chaos:comparative results for the chaotic satellite attitude control problem,Physica D,2000,135:41-62
  • 9KUANG J L,Meehan P A,Leung A Y T.Suppressing chaos via Lyapunov Krasovskii's method.Chaos,Solitons and Fractals,2006,27:1408-1414
  • 10Dracopoulos D C,Jones A J.Adaptive neuro-genetic control of chaos applied to the attitude control problem,Neural Comp.Appl,1997,6(2):102-115

共引文献47

同被引文献109

引证文献14

二级引证文献31

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部