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Orbital plane change maneuver strategy using electric propulsion

机译:电动推进的轨道平面变化机动策略

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The orbital dynamics basis for orbital plane change maneuver using chemical propulsion is the impulsive orbital change theory in practical engineering. The orbital plane change theory using continuous thrust suitable for electric propulsion is studied in this paper. A set of nonsingular orbital variational equations using quaternion is used to investigate the orbital motion of spacecraft under constant normal acceleration departing from a Keplerian circular orbit firstly. Results show that the orbit of spacecraft under continuous constant normal acceleration is a circular orbit over the gravitational center on the same spherical surface as the initial orbit, and it is tangent to the initial circular orbit at the initial position. Continuous and discontinuous maneuver strategies are then designed using the previous theory, and they are validated by numerical simulations. Results indicate that the strategy can work effectively.
机译:使用化学推进进行轨道平面变化操纵的轨道动力学基础是实际工程中的脉冲轨道变化理论。研究了适用于电力推进的连续推力轨道平面变化理论。首先使用一组使用四元数的非奇异轨道变分方程研究航天器在恒定法向加速度下偏离开普勒圆轨道的轨道运动。结果表明,航天器在连续恒定法向加速度下的轨道是与初始轨道相同的球面上重心上方的圆形轨道,并且在初始位置与初始圆形轨道相切。然后,使用先前的理论设计连续和不连续的机动策略,并通过数值模拟对其进行验证。结果表明该策略可以有效地发挥作用。

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