航天动力学

  • 网络astrodynamics;Orbital mechanics
航天动力学航天动力学
  1. 航天动力学的面向对象建模

    AVIATION & SPACEFLIGHT Object-Oriented Modeling about Astrodynamics

  2. 利用这一模型,可以为不同复杂度的航天动力学建模提供支持,方便构筑面向具体问题的应用。

    The models can provide support on various complexity simulation and the application question-oriented can be built expediently .

  3. 为满足卫星轨道递推计算需要,根据天体力学、航天动力学理论,建立起二体条件下的卫星轨道动力学模型。

    In order to calculate the orbit of the satellite , we established satellite movement model based on celestial mechanics and spaceflight dynamics .

  4. 在近40年里,多刚体系统动力学逐渐成为了复杂机械系统设计和仿真的一个重要工具,特别是在航空和航天动力学及控制、机器人、生物力学、道路车辆等领域。

    Multi-rigid-body dynamics has grown in the past four decades to be an important tool in the design and simulation of complex mechanical systems . This is especially true in the area of aerospace dynamics and control , robotics , biomechanics , and road and rail vehicle .

  5. 运载中的航天仪器动力学研究

    Research of dynamics of spaceflight apparatus during transportation

  6. 航空航天生物动力学教学改革实践

    Practice in teaching reform of Aerospace Biodynamics

  7. 发展中的航天空气动力学

    Some Progress in Aerospace Aerodynamics

  8. 基于子结构的航天相机冲击动力学仿真

    Impact Dynamics Simulation of the Space Camera Based on Substruction

  9. 可折叠航天结构展开动力学分析

    Dynamic analysis for deployment process of foldable aerospace structures

  10. 航天飞行器轨道动力学与控制

    Orbit dynamics and control of spaceflight

  11. 航天飞行器相对运动动力学及其控制方法

    The dynamics and control of the spacecraft ' relative motion

  12. 航天柔性多体动力学及其发展

    Spacecraft Flexible Multi - Body Dynamics and Its Development

  13. 实现了对航天可展结构动力学性能在时频域内的精细考察,将有助于提高航天器结构的分析与设计水平。

    The results provide precise measurements of the dynamics characteristics of the space deployable structure in the time-frequency domain , which are helpful for improving the system analysis and design .