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Optimal DELTAV-earth-gravity-assist trajectories in the restricted three-body problem

机译:最佳的饮食 - 重力辅助轨迹在限制的三体问题中

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The extension of Lawden's primer vector theory from the two-body to the three-body problem is obtained by means of a peculiar approach to the optimization of impulsive maneuvers. The trajectory is considered to be composed of ballistic arcs that connect at "corners" where the spacecraft velocity undergoes jumps; no explicit control is present, but the necessary conditions for optimality are nevertheless provided by the optimal control theory. Thrust is applied parallel to the velocity adjoint vector, or primer vector, at the corners, where the primer must have unit magnitude; in time-free problems the time-derivative of the primer magnitude must be null in correspondence to the corners. Numerical examples deal with simple DELTAV-Earth-gravity-assist maneuvers, that are two-burn (departure and deep space) time-free transfers in the three-body problem; an inequality constraint ensures a surfficient distance from the Earth during the flyby. Results are compared to similar results obtained by using the patched-conic approximation. A powered flyby is performed when the primer magnitude suggests an additional burn in close proximity to the Earth.
机译:Lawden的底漆矢量理论的延伸,从两体三体是由一种特殊的方法来冲动演习的优化来获得。轨迹被认为是由电弧弹道连接在“拐角”,其中太空船速度经历的跳跃;没有明确的控制是存在的,但对于最优的必要条件是仍然由最优控制理论提供。推力被施加平行于速度伴随向量,或引物载体,在拐角处,其中,所述引物必须具有单位幅值;在免费时间问题的引物大小的时间导数必须是对应于所述拐角空。算例处理简单的ΔV地球重力协助演习,这是两个烧(出发地和深空)的三体的自由时间,转让;不等式约束确保飞掠期间从地球一个surfficient距离。结果进行比较,以通过使用修补的圆锥近似而得到类似的结果。在底漆幅度表明在接近地球的其他刻录时,执行动力飞越。

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