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航天器智能自主控制技术发展现状与展望 被引量:23

Current Situation and Prospective of Intelligent Autonomous Control for Spacecrafts
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摘要 本文首先介绍国内外在航天器智能自主控制领域的发展模式与发展水平 :发展模式包括战略规划、研究开发、型号应用三个层次 ;发展水平包括功能齐备与指标精良两个方面。然后对该领域的阶段发展目标进行了展望 :( 1 )实时智能自主姿态控制 ;( 2 )智能自主GNC ;( 3)智能信息技术在航天器控制系统、平台和有效载荷上的应用。 Firstly, the development modes and developing levels at home and abroad in the field of intelligent autonomous control for spacecraft are presented in this paper: from a viewpoint of development modes, there are three phases including strategic planning, research and development, and application in spacecrafts; from a viewpoint of developing levels, there are two aspects including functional completeness and excellent indices Then the following three development phases in this field are prospected: (1) Real-time intelligent autonomous attitude control; (2) Intelligent autonomous GNC ; (3) Application of intelligent information techniques in control systems, platforms and payloads for spacecrafts
作者 李智斌
出处 《航天控制》 CSCD 北大核心 2002年第4期1-7,27,共8页 Aerospace Control
基金 国家自然科学基金资助项目 ( 90 2 0 50 0 8)
关键词 航天器 自主控制 发展现状 智能信息处理 知识控制 Spacecraft Intelligent information processing Intelligent control
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参考文献9

  • 1Fu K. Learning control system and intelligent control systems: an intersection of artificial intelligence and automatic control. IEEE Trans. AC, 1971 被引量:1
  • 2吴宏鑫.航天控制的发展方向--航天器智能自主控制[J].控制工程(北京),2001(5):40-46. 被引量:2
  • 3Bukley A P. Hubble Space Telescope pointing control system design improvement study results. J of Guidance, Control, and Dynamics, 1995, 18 (2): 194~199 被引量:1
  • 4Fesq L and Stephan A. Advances in spacecraft autonomy using artificial intelligence techniques. Pro. of the Annual Rocky Mountain Guidance and Control Conf., 1989:53 ~ 67 被引量:1
  • 5Murugesan S. Application of AI to real- time intelligent attitude control of spacecraft. Pro. IEEE Inte. Symp. Intelligent Control 1989: 287~ 292 被引量:1
  • 6KrishnaKumar K. Adaptive neuro - control for spacecraft attitude control. Pro. IEEE Conf. Control Applications V21994: 1153~ 1158 被引量:1
  • 7Antsaklis P. Defining Intelligent Control. Procedings of the 1994 IEEE inter. Symp. On Intelligent Control, Aug. 16 ~ 18, Holiday Inn Crowne Placa, Columbus 被引量:1
  • 8Mackison D and Gifford K. An expert system for satellite attitude determination and control. N96- 30503. 被引量:1
  • 9Butyrin A, et al. An expert system for design of spacecraft attitude control systems. J of Artificial Intelligence in Engineering, V11, N1, 1997, 49~59 被引量:1

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