Trajectory correction maneuver design based on B-plane targeting for low-thruster

D. Cho, H. Bang, Hae-Dong Kim
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Abstract

For the interplanetary mission, the spacecraft must require the trajectory correction maneuver (TCM) to reduce the trajectory error due to the influence of unexpected external perturbation forces. There are many kinds of researches focused on these TCM techniques for the impulsive thrust. Among them, the B-plane targeting method is mainly applied to the interplanetary mission as TCM method. However, there are brilliant developments in the propulsion systems; especially the electrical propulsion system is adopted in some spacecraft. Thus, it is necessary to design the TCM algorithm for such low-thruster for future interplanetary missions. Therefore, in this paper, the TCM algorithm for the low thrust such like electrical propulsion system is suggested to correct the target B-vector and target time to closest approach (TCA). To design the low thrust guidance scheme, the Lyapunov feedback control is used in this paper.
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基于b机瞄准的低推力飞行器弹道修正机动设计
在行星际任务中,航天器必须进行轨道修正机动,以减小由于外部非预期摄动力的影响而产生的轨道误差。针对这些冲激推力的中医治疗方法,有多种不同的研究。其中,b面瞄准方法作为TCM方法主要应用于行星际任务。然而,在推进系统方面有了辉煌的发展;特别是一些航天器采用了电力推进系统。因此,在未来的行星际任务中,有必要为这种低推力推进器设计TCM算法。因此,本文提出了针对电力推进系统等低推力系统的TCM算法,对目标b向量和目标最接近时间进行校正。为了设计低推力制导方案,本文采用了李雅普诺夫反馈控制。
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