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Attitude Responses in Coupled Orbit-Attitude Dynamical Model in Earth-Moon Lyapunov Orbits

机译:月球Lyapunov轨道耦合的轨道-姿态动力学模型中的姿态响应。

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The attitude motion of a rigid spacecraft in fully nonlinear reference orbits is explored in this investigation, within the context of the planar circular restricted three-body problem. The reference trajectories originate from the Lyapunov families about the Lagrangian points L_1 and L_2 in the Earth-Moon system. Kane's method is employed to derive the equations of motion, which are numerically solved. The capability to reproduce the dynamic response is leveraged to understand the attitude behavior across the Lyapunov families. The problem formulation and the simulation environment are detailed. The inertia properties of the spacecraft are varied across the periodic family of orbits. Finally, attitude maps are introduced to summarize the results and identify the regions, in terms of the orbit size and inertia properties, where the spacecraft maintains the initial orientation with respect to the rotating frame in the circular restricted three-body problem.
机译:在平面圆形受限三体问题的背景下,本研究探讨了刚性航天器在完全非线性参考轨道中的姿态运动。参考轨迹源自关于地球月球系统中拉格朗日点L_1和L_2的Lyapunov族。凯恩(Kane)方法用于导出运动方程,并对其进行数值求解。重现动态响应的能力被利用来了解整个Lyapunov系列的态度行为。详细阐述了问题的表述和仿真环境。航天器的惯性特性在整个周期性轨道系列中都不同。最后,引入姿态图以总结结果并根据轨道大小和惯性属性确定区域,在该区域中,航天器在圆形受限三体问题中相对于旋转框架保持初始方向。

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  • 来源
    《Journal of guidance, control, and dynamics》 |2015年第7期|1264-1273|共10页
  • 作者单位

    Purdue University, West Lafayette, Indiana 47907-2045,School of Aeronautics and Astronautics, Armstrong Hall of Engineering, 701 West Stadium Avenue,currently Princeton Satellite Systems, Inc., 6 Market Street, Suite 926, Plainsboro, NJ 08536;

    Purdue University, West Lafayette, Indiana 47907-2045,School of Aeronautics and Astronautics, Armstrong Hall of Engineering, 701 West Stadium Avenue;

    Purdue University, West Lafayette, Indiana 47907-2045,School of Aeronautics and Astronautics, Armstrong Hall of Engineering, 701 West Stadium Avenue;

    Politecnico di Milano, 20156 Milan, Italy,Department of Aerospace Engineering, Via La Masa;

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