• DocumentCode
    1709503
  • Title

    Launch opportunity research for Earth-Mars low thrust trajectory

  • Author

    Zhao Zun-hui ; Shang Hai-bin ; Cui Ping-yuan ; Wang Shuai

  • Author_Institution
    Key Lab. of Dynamics & Control of Flight Vehicle, Beijing Inst. of Technol., Beijing, China
  • fYear
    2013
  • Firstpage
    2350
  • Lastpage
    2355
  • Abstract
    Low thrust trajectory design and optimization is a challengeable work in interplanetary exploration. The launch opportunity of low thrust trajectory is studied in the paper. Based on a hybrid method, the low thrust optimal control problem is converted to a parameters optimization problem. An adjoint control transformation is proposed for decreasing the difficulty of initial values guess. And the solution searching scope can be reduced effectively through the introduction of adjoint control transformation, which converts costate state to other variables which possess actual range and meaning partially. Finally, a global-local searching procedure is proposed for obtaining the low thrust trajectory launch opportunities. Differential evolution algorithm is used to generate initial values for the nonlinear programming problem, and sequential quadratic programming algorithm is used for improving the accurate of solutions. The effectiveness of proposed method is validated through three Earth-Mars missions low thrust trajectory design.
  • Keywords
    Earth; Mars; aerospace propulsion; evolutionary computation; optimal control; quadratic programming; search problems; trajectory control; Earth-Mars missions low thrust trajectory design; adjoint control transformation; differential evolution algorithm; global-local searching procedure; interplanetary exploration; low thrust optimal control problem; low thrust trajectory launch opportunities; nonlinear programming problem; parameter optimization problem; sequential quadratic programming algorithm; solution searching scope; Algorithm design and analysis; Optimal control; Optimization; Programming; Propulsion; Space vehicles; Trajectory; adjoint control transformation; hybrid procedure; launch opportunity; low thrust;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control Conference (CCC), 2013 32nd Chinese
  • Conference_Location
    Xi´an
  • Type

    conf

  • Filename
    6639819