一种面向目标的双小行星探测制导方法

IF 2.7 1区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Antonio Rizza, Carmine Giordano, Francesco Topputo
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引用次数: 0

摘要

在小型机构附近的操作需要高度的自主权,以实现成本效益高、安全可靠的解决方案。自主弹道和作战规划能力在其中起着关键作用。为实现具有脉冲控制能力的高阶任务目标,提出了一种面向目标的机载制导策略。该方法基于对控制域进行的抽象可达性分析,将模型预测控制理论与人工势场算法相结合。优化问题的一般和灵活的表述方式允许针对不同的目标,同时符合任意数量的任务约束。特别是,本工作提出了对该领域的两个主要贡献:在公式中嵌入非均匀观测约束以处理具有挑战性的照明条件的方法,以及包含符合地面操作和机载重新规划的特定操作约束。该方法被应用于米拉尼任务,这是赫拉的两颗立方体卫星之一,目标是对主要吸引物Didymos的全球覆盖,并对次要小行星Dimorphos的特定特征进行详细观察。参与该平台任务分析、图像处理和GNC设计的作者认为,这种方法也代表了一种可行的工具,可以在操作期间有效地生成飞行动力学参考。为了实现任务目标,研究了不同的度量标准,导致了本工作中讨论的四种应用场景。从计算成本、收敛性能和效率三个方面对结果进行了比较。这些结果代表了在实现立方体卫星近距离操作的自主制导能力方面向前迈进了一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A goal-oriented guidance approach for binary asteroids exploration

Operations in proximity of minor bodies demands high levels of autonomy to achieve cost-effective safe and reliable solutions. Autonomous trajectory and operations planning capability plays a pivotal role in this. A goal-oriented guidance strategy for on-board implementation is presented in this paper to achieve high level mission objectives with impulsive control capability. The methodology is based on abstract reachability analysis performed on the control domain combining model predictive control theory with artificial potential fields algorithms. The formulation of the optimization problem in a general and flexible way allows to target different goals while being compliant with an arbitrary number of mission constraints. In particular, two main contributions to the field are proposed in this work: a way of embedding non-uniform observation constraints in the formulation to deal with challenging illumination conditions, and the inclusion of specific operational constraints to be compliant both with ground operations and on-board replanning. The methodology is applied to the Milani mission, one of the two Hera’s CubeSats, targeting a global coverage of the main attractor, Didymos, and detailed observations of specific features on the secondary asteroid, Dimorphos. The authors, being involved in the mission analysis, image processing, and GNC design of the platform, believe that this methodology also represents a viable tool for efficiently generating flight dynamics references during operations. Different metrics are investigated to achieve mission objectives leading to four application scenarios that are discussed in this work. Results are compared in terms of computational cost, convergence properties and efficiency. These results represent a step forward in enabling autonomous guidance capability for CubeSats proximity operations.

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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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