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首页> 外文期刊>Discrete dynamics in nature and society >The Earth-Mars Transfer Trajectory Optimization of Solar Sail Based on hp-Adaptive Pseudospectral Method
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The Earth-Mars Transfer Trajectory Optimization of Solar Sail Based on hp-Adaptive Pseudospectral Method

机译:基于HP-Adaptive Pseudtepectran方法的太阳能帆地球火星转移轨迹优化

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摘要

Solar sails have many advantages over traditional chemical propulsion spacecraft, such as needlessness of fuel, high payload ratio, long service life, and great application potential in deep space exploration, interstellar voyage, and other aerospace application fields. However, the period of solar sail transfer from the initial orbit to the desired orbit is relatively long. Thus, it is necessary to optimize the transfer trajectory of solar sail according to specific tasks. The hp-adaptive pseudospectral method combines the global pseudospectralmethodwith the finite elementmethod, which adopts double layer optimization strategy to solve the optimal control problem and has higher computational efficiency and accuracy than the traditional global pseudospectral method. In this paper, the pressure of solar light acting on the solar sail is analyzed, and the kinematic equation of the solar sail is established in polar coordinate system first; then the basic principle of the hp-adaptive pseudospectral method is introduced, and the steps of solving the transfer trajectory optimization problem by hp-adaptive pseudospectral method are proposed; finally, the trajectory optimization of the solar sail from Earth orbit to Sun-centered Mars orbit is simulated as an example to demonstrate the effectiveness of hp-adaptive pseudospectralmethod in the orbit transfer optimization problem of solar sail. The simulation results show that the adopted method is not sensitive to the initial values and has more reasonable distribution and less computational cost than the Gauss pseudospectral method.
机译:太阳能航行与传统化学推进航天器相比具有许多优势,例如燃料,高有效载荷比,长期使用寿命长,深空勘探,星际航行和其他航空航天应用领域的巨大应用潜力。然而,太阳帆从初始轨道转移到所需轨道的时期相对较长。因此,必须根据特定任务优化太阳能航行的转移轨迹。 HP-Adaptive Pseudtepectral方法将全局PseudtompectralMethodwith提供了有限元方法,它采用双层优化策略来解决最佳控制问题,并且具有比传统的全球伪模式的计算效率和准确性更高。在本文中,分析了在太阳帆上作用的太阳光的压力,首先在极坐标系中建立太阳帆的运动学方程;然后,提出了HP-Adaptive Pseudthectration方法的基本原理,提出了通过HP-Adaptive Pseudtepectrant方法解决转移轨迹优化问题的步骤;最后,模拟了从地球轨道到阳光轨道的太阳能航行的轨迹优化作为示例,以证明HP-Adaptive Pssudtepectralmethod在太阳帆轨道转移优化问题中的有效性。仿真结果表明,采用的方法对初始值不敏感,并且具有比Gauss伪谱法的合理分布和计算成本更少。

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  • 作者单位

    School of Aerospace Science and Technology Xidian University Xi'an Shaanxi 710071 China;

    School of Aerospace Science and Technology Xidian University Xi'an Shaanxi 710071 China;

    School of Astronautics Northwestern Polytechnical University Xi'an Shaanxi 710072 China;

    School of Aerospace Science and Technology Xidian University Xi'an Shaanxi 710071 China;

    School of Aerospace Science and Technology Xidian University Xi'an Shaanxi 710071 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 数学模拟、近似计算 ;
  • 关键词

    Earth-Mars; Transfer; Trajectory;

    机译:地球火星;转移;轨迹;

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