具有状态约束和输入约束的航天器无陀螺姿态再定向控制

IF 2.6 3区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Qingqing Dang , Wenbo Li , Haichao Gui
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引用次数: 0

摘要

针对无陀螺航天器姿态重定向问题,提出了一种基于显式参考调速器的控制方案,该方案考虑了指向、角速度和输入饱和等特定约束条件。所提出的控制方案分为两层,在满足上述约束条件的同时保证了姿态的渐近稳定性。内层采用基于沉浸和不变性技术的角速度观测器的输出反馈控制。参考层通过分析与指向约束相关的几何结构,确定角速度上界,优化控制输入解,建立由不变集描述的安全边界。此外,我们在不变量集中引入了与角速度估计误差相关的动态因子,以防止由于角速度信息不可测而导致状态超出约束集。然后在参考层设计最短的制导路径。最后,通过数值仿真验证了所提约束姿态控制算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gyro-free attitude reorientation control of spacecraft with state and input constraints
This paper introduces an explicit reference governor-based control scheme to address the gyro-free spacecraft attitude reorientation problem, considering specific constraints such as pointing, angular velocity, and input saturation. The proposed control scheme operates in two layers, ensuring the asymptotic stability of the attitude while adhering to the aforementioned constraints. The inner layer employs output feedback control utilizing an angular velocity observer based on immersion and invariance technology. Through an analysis of the geometry associated with the pointing constraint, determination of the upper bound of angular velocity, and optimization of the control input solution, the reference layer establishes a safety boundary described by the invariant set. Additionally, we introduce the dynamic factor related to the angular velocity estimation error into the invariant set to prevent states from exceeding the constraint set due to unmeasurable angular velocity information. The shortest guidance path is then designed in the reference layer. Finally, we substantiate the efficacy of the proposed constrained attitude control algorithm through numerical simulations.
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来源期刊
European Journal of Control
European Journal of Control 工程技术-自动化与控制系统
CiteScore
5.80
自引率
5.90%
发文量
131
审稿时长
1 months
期刊介绍: The European Control Association (EUCA) has among its objectives to promote the development of the discipline. Apart from the European Control Conferences, the European Journal of Control is the Association''s main channel for the dissemination of important contributions in the field. The aim of the Journal is to publish high quality papers on the theory and practice of control and systems engineering. The scope of the Journal will be wide and cover all aspects of the discipline including methodologies, techniques and applications. Research in control and systems engineering is necessary to develop new concepts and tools which enhance our understanding and improve our ability to design and implement high performance control systems. Submitted papers should stress the practical motivations and relevance of their results. The design and implementation of a successful control system requires the use of a range of techniques: Modelling Robustness Analysis Identification Optimization Control Law Design Numerical analysis Fault Detection, and so on.
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