刚柔耦合响应下的太阳翼位移场重构方法
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上海市自然科学基金面上项目(25ZR1401136)


Reconstruction Method of Solar Wing Displacement Field under Rigid-Flexible Coupled Response
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    摘要:

    随着大型柔性太阳翼在新一代航天器中的广泛应用,其刚柔耦合动力学特性引发的位移场实时监测需求日益凸显.针对现有位移场重构研究多基于静力学工况且难以适应航天器复杂动力学激励的问题,本文提出一种基于混合坐标法与模态叠加原理的动态位移场重构方法.通过分析刚柔耦合航天器动力学模型,结合模态分析方法构建了太阳翼全局位移场高精度重构算法.该方法能够在姿态机动与柔性振动耦合工况下,仅需少量传感数据即可实现动态位移场的实时重构.研究结果表明:本文所提方法能够在动力学激励下实现对太阳翼全局位移场的高精度重构.

    Abstract:

    With the wide application of large flexible solar wings in new generation spacecraft, the demand for real-time monitoring of the displacement field induced by rigid-flexible coupling dynamics is becoming increasingly prominent. Aiming at the limitation that the existing displacement field reconstruction studies are mostly based on the static working conditions and are difficult to adapt to the complex dynamic excitation of the spacecraft, this paper proposes a dynamic displacement field reconstruction method based on the hybrid coordinate method and the assumed modal method. By analyzing the rigid-flexible coupled spacecraft dynamics model, a high-precision reconstruction algorithm for the global displacement field of the solar wing is constructed by combining the modal analysis techniques. The method can realize real-time reconstruction of the dynamic displacement field under the coupling conditions of attitude maneuver and flexible vibration with only a small amount of sensing data. The results show that the proposed method can realize high-precision reconstruction of the global displacement field of the solar wing under dynamic excitation.

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胡本昂,赖王杰,黄昌洋,林成辉,张顺琦.刚柔耦合响应下的太阳翼位移场重构方法[J].动力学与控制学报,2026,24(1):55~63; Hu Benang, Lai Wangjie, Huang Changyang, Lin Chenghui, Zhang Shunqi. Reconstruction Method of Solar Wing Displacement Field under Rigid-Flexible Coupled Response[J]. Journal of Dynamics and Control,2026,24(1):55-63.

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  • 收稿日期:2025-03-19
  • 最后修改日期:2025-07-04
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  • 在线发布日期: 2026-01-15
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