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Magnetic sail-based displaced non-Keplerian orbits

机译:基于磁帆的位移非Keplerian轨道

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This paper deals with the problem of determining the requirements for the maintenance of circular, displaced, non-Keplerian orbits around the Sun by means of a magnetic sail-based spacecraft. The magnetic sail is an exotic propellantless propulsion system that gains thrust from the magnetostatic interaction between the solar wind and an artificial magnetic field, which is generated on board by an electrical current flowing through a loop of conducting material. The propulsive requirements are given in terms of characteristic acceleration and thrust (cone) angle. The analysis is performed using a recent mathematical model in which the magnetic sail thrust vector is expressed as a function of the Sun-spacecraft distance and the sail attitude. Moreover, a linear stability analysis is carried out to identify the (marginally) stable displaced orbits when an error in the orbital insertion is assumed. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:本文涉及一个问题,即通过基于磁帆的航天器确定对围绕太阳的圆形,位移,非Keplerian轨道进行维护的要求。磁帆是一种奇特的无推进剂推进系统,它从太阳风和人工磁场之间的静磁相互作用中获得推力,该静磁场相互作用是在船上由流过导电材料环的电流产生的。根据特性加速度和推力(锥角)给出推进要求。使用最新的数学模型进行分析,其中磁帆推力矢量表示为太阳飞船距离和帆姿态的函数。此外,进行线性稳定性分析,以在假设轨道插入发生错误时识别(略微)稳定的位移轨道。 (C)2019 Elsevier Masson SAS。版权所有。

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