• DocumentCode
    3660391
  • Title

    Configuration maintaining control of three-body ring tethered system based on thrust compensation

  • Author

    Panfeng Huang;Zhenyu Lu;Binbin Liu;Fan Zhang;Zhongjie Meng;Zhengxiong Liu

  • Author_Institution
    Research Center of Intelligent Robotics and National Key Laboratory of Aerospace Flight Dynamics, School of Astronautics, Northwestern Polytechnic University, Xian, Shanxi Province, China
  • fYear
    2015
  • Firstpage
    2275
  • Lastpage
    2280
  • Abstract
    Space multi-tethered systems have shown broad prospects in remote observation missions. This paper mainly focuses on the dynamics modeling and configuration maintaining control of space spinning three-body ring tethered system for such mission. Firstly, we establish the spinning dynamic model of the three-body ring tethered system considering the elasticity of the tether using Newton-Euler method. Subsequently, a control strategy based on thrust compensation, namely thrust to simulate tether compression under LP initial equilibrium conditions is designed to solve the configuration maintaining control problem. Control effects are verified by numerical simulation compared with uncontrolled situation. Simulation results show that the configuration of the three-body ring tethered system could maintain under this active control strategy.
  • Keywords
    "Space vehicles","Aerospace electronics","Satellites","Spinning","Gravity","Orbits","Aerodynamics"
  • Publisher
    ieee
  • Conference_Titel
    Information and Automation, 2015 IEEE International Conference on
  • Type

    conf

  • DOI
    10.1109/ICInfA.2015.7279665
  • Filename
    7279665