具有惯性固定自旋轴的单系电子帆的最佳轨道转移

IF 2.7 1区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Alessandro A. Quarta, Marco Bassetto, Giovanni Mengali
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引用次数: 0

摘要

本研究分析了由自旋稳定的太阳风电动帆(E-sail)推进的航天器的最佳转移轨迹,E-sail带有单根导电系绳,自旋轴在惯性(日心)参照系中方向固定。本研究中提出的方法有助于快速分析当前一代小型航天器的最佳转移轨迹,这些航天器的设计目的是获得电帆推进概念的现场证据。在此背景下,本研究从最近提出的单系电子帆推力模型开始,通过将机载电子发射器的(二元)状态视为单一控制参数,讨论了典型的二维星际转移中的最优控制法则和性能。由此得出的航天器日心轨迹是开普勒弧线与推进弧线交替出现的连续轨迹,即电子发射器开启的阶段。数值模拟特别表明,具有惯性固定自旋轴的单系绳电子帆可以通过适当改变单一控制参数,以圆周到圆周的二维转移方式执行经典的飞行任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal orbit transfer of single-tether E-sail with inertially fixed spin axis

This study analyzes the optimal transfer trajectory of a spacecraft propelled by a spin-stabilized electric solar wind sail (E-sail) with a single conducting tether and a spin axis with a fixed direction in an inertial (heliocentric) reference frame. The approach proposed in this study is useful for rapidly analyzing the optimal transfer trajectories of the current generation of small spacecraft designed to obtain in-situ evidence of the E-sail propulsion concept. In this context, starting with the recently proposed thrust model for a single-tether E-sail, this study discusses the optimal control law and performance in a typical two-dimensional interplanetary transfer by considering the (binary) state of the onboard electron emitter as the single control parameter. The resulting spacecraft heliocentric trajectory is a succession of Keplerian arcs alternated with propelled arcs, that is, the phases in which the electron emitter is switched on. In particular, numerical simulations demonstrated that a single-tether E-sail with an inertially fixed spin axis can perform a classical mission scenario as a circle-to-circle two-dimensional transfer by suitably varying a single control parameter.

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来源期刊
Astrodynamics
Astrodynamics Engineering-Aerospace Engineering
CiteScore
6.90
自引率
34.40%
发文量
32
期刊介绍: Astrodynamics is a peer-reviewed international journal that is co-published by Tsinghua University Press and Springer. The high-quality peer-reviewed articles of original research, comprehensive review, mission accomplishments, and technical comments in all fields of astrodynamics will be given priorities for publication. In addition, related research in astronomy and astrophysics that takes advantages of the analytical and computational methods of astrodynamics is also welcome. Astrodynamics would like to invite all of the astrodynamics specialists to submit their research articles to this new journal. Currently, the scope of the journal includes, but is not limited to:Fundamental orbital dynamicsSpacecraft trajectory optimization and space mission designOrbit determination and prediction, autonomous orbital navigationSpacecraft attitude determination, control, and dynamicsGuidance and control of spacecraft and space robotsSpacecraft constellation design and formation flyingModelling, analysis, and optimization of innovative space systemsNovel concepts for space engineering and interdisciplinary applicationsThe effort of the Editorial Board will be ensuring the journal to publish novel researches that advance the field, and will provide authors with a productive, fair, and timely review experience. It is our sincere hope that all researchers in the field of astrodynamics will eagerly access this journal, Astrodynamics, as either authors or readers, making it an illustrious journal that will shape our future space explorations and discoveries.
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