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Electric sail elliptic displaced orbits with advanced thrust model

机译:具有先进推力模型的电动帆椭圆形位移轨道

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摘要

This paper analyzes the performance of an Electric Solar Wind Sail for generating and maintaining an elliptic, heliocentric, displaced non-Keplerian orbit. In this sense, this paper extends and completes recent studies regarding the performances of an Electric Solar Wind Sail that covers a circular, heliocentric, displaced orbit of given characteristics. The paper presents the general equations that describe the elliptic orbit maintenance in terms of both spacecraft attitude and performance requirements, when a refined thrust model (recently proposed for the preliminary mission design) is taken into account. In particular, the paper also discusses some practical applications on particular mission scenarios in which an analytic solution of the governing equations has been found.
机译:本文分析了电动太阳风帆在产生和维持椭圆形,日心性,位移的非吉普勒轨道方面的性能。从这个意义上讲,本文扩展并完成了有关电动太阳风帆性能的最新研究,该电动风帆覆盖具有给定特性的圆形,日心中心,位移轨道。当提出改进的推力模型(最近为初步任务设计提出)时,本文提出了根据航天器姿态和性能要求来描述椭圆轨道维护的一般方程式。特别是,本文还讨论了在特定任务场景下的一些实际应用,在其中找到了控制方程的解析解。

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