大型空间膜天线动力学和主动控制综述

IF 2.7 1区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Xiang Liu, Guoping Cai
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引用次数: 0

摘要

大型空间膜天线在卫星通信、天基预警和地球观测方面具有巨大潜力。由于其体积大、灵活性高,膜天线的动态分析和控制极具挑战性。为了保持天线的工作性能,必须严格保持指向和表面精度。因此,对大型空间膜天线进行精确的动态建模和有效的主动控制具有重要的理论意义和实用价值,近年来引起了广泛关注。本文综述了大尺度空间膜天线的动力学和主动控制。首先,概述了大规模空间膜天线的发展和现状。随后,详细讨论了大型膜天线动力学和主动控制的关键问题,包括皱膜动力学、大振幅非线性振动、非线性模型还原、刚-柔-热耦合动力学建模、在轨模态参数识别、主动振动控制和基于波的振动控制。最后,介绍了研究展望和未来趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of dynamics and active control of large-scale space membrane antenna

Large-scale space membrane antennas have significant potential in satellite communication, space-based early warning, and Earth observation. Because of their large size and high flexibility, the dynamic analysis and control of membrane antenna are challenging. To maintain the working performance of the antenna, the pointing and surface accuracies must be strictly maintained. Therefore, the accurate dynamic modeling and effective active control of large-scale space membrane antennas have great theoretical significance and practical value, and have attracted considerable interest in recent years. This paper reviews the dynamics and active control of large-scale space membrane antennas. First, the development and status of large-scale space membrane antennas are summarized. Subsequently, the key problems in the dynamics and active control of large membrane antennas, including the dynamics of wrinkled membranes, large-amplitude nonlinear vibration, nonlinear model reduction, rigid-flexible-thermal coupling dynamic modeling, on-orbit modal parameter identification, active vibration control, and wave-based vibration control, are discussed in detail. Finally, the research outlook and future trends are presented.

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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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