论文标题

使用深空的低推力减少土星轨道插入冲动

Reduction of Saturn Orbit Insertion Impulse using Deep-Space Low Thrust

论文作者

Fantino, Elena, Flores, Roberto, Pelaez, Jesus, Raposo-Pulido, Virginia

论文摘要

由于航天器和行星之间的速度差异,土星旋转的轨道插入需要大型冲动操作。本文提出了一种策略,旨在通过深空电气推进来大大减少土星的双曲线过剩速度。行星际轨迹包括木星的重力辅助,并结合低迷动作。从地球到木星的推力弧降低了发射能量的需求,而在木星弗莱比(Jupiter Flyby)到达土星后,适用的临时指导法也降低了双曲线过剩速度。这将轨道插入脉冲降低到即使使用泰坦的重力辅助也可以捕获的程度。介绍和讨论了控制法律算法,对大规模预算的好处和主要技术方面。将简单的转向定律与轨迹优化器进行比较,以评估结果的质量和改进的可能性。

Orbit insertion at Saturn requires a large impulsive manoeuver due to the velocity difference between the spacecraft and the planet. This paper presents a strategy to reduce dramatically the hyperbolic excess speed at Saturn by means of deep-space electric propulsion. The interplanetary trajectory includes a gravity assist at Jupiter, combined with low-thrust maneuvers. The thrust arc from Earth to Jupiter lowers the launch energy requirement, while an ad hoc steering law applied after the Jupiter flyby reduces the hyperbolic excess speed upon arrival at Saturn. This lowers the orbit insertion impulse to the point where capture is possible even with a gravity assist with Titan. The control-law algorithm, the benefits to the mass budget and the main technological aspects are presented and discussed. The simple steering law is compared with a trajectory optimizer to evaluate the quality of the results and possibilities for improvement.

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