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Modeling and experimental study of dynamic characteristics of the moment wheel assembly based on structural coupling

机译:基于结构耦合的力矩轮组件动态特性的建模与实验研究

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摘要

The microvibration of the satellite moment wheel assembly (MWA) is an essential input for integrated simulation analysis of spacecraft microvibration, which forms the basis for spacecraft vibration suppression. Therefore, it is important to guarantee high-precision data from ground measurements of vibration sources for research into the stabilization accuracy of large space telescopes. In general, a coupled wheel-to-structure disturbance model is more representative of the real environment, and two aspects of the coupling need to be considered: coupling caused by insufficient MWA stiffness and coupling caused by the vibration source installation structure. Therefore, this paper presents the relevant work conducted on these two coupling aspects. First, this paper proposes the amplification factor coefficient, which considers structural coupling based on the classical vibration model of the MWA. The average error in this case could be within 5%. This approach could reduce the computational requirements without affecting the quality of the results. Additionally, as the mass of the MWA is greater and the disturbance output is more obvious. The structural coupling with the installation foundation is unavoidable. In this paper, the effects of installation stiffness on the disturbance measurements are analyzed based on the dynamic mass measurement method and quantitative impedance theory. Finally, based on the above theory, verification testing of the disturbance and transfer models of the MWA is performed and the test results are compared with the simulation results; it is shown that a level of accuracy within ±5% can be achieved.
机译:卫星力矩轮组件(MWA)的微纤维是航天器微纤维集成仿真分析的必要输入,这构成了航天器振动抑制的基础。因此,重要的是保证从地面测量的高精度数据进行振动源,以研究大型空间望远镜的稳定精度。通常,耦合的车轮到结构扰动模型更具代表性的真实环境,并且需要考虑耦合的两个方面:由振动源安装结构引起的MWA刚度和耦合不足引起的耦合。因此,本文介绍了对这两个耦合方面进行的相关工作。首先,本文提出了基于MWA经典振动模型的结构耦合的放大系数。这种情况下的平均误差可能在5%范围内。这种方法可以减少计算要求,而不会影响结果的质量。另外,随着MWA的质量更大,扰动输出更加明显。与安装基础的结构耦合是不可避免的。本文基于动态质量测量方法和定量阻抗理论,分析了安装刚度对干扰测量的影响。最后,基于上述理论,进行了MWA的扰动和转移模型的验证测试,并将测试结果与模拟结果进行了比较;结果表明,可以实现±5%内的精度水平。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2021年第1期|107007.1-107007.15|共15页
  • 作者单位

    CAS Key Laboratory of On-orbit Manufacturing and Integration for Space Optics System Changchun Institute of Optics Fine Mechanics and Physics Chinese Academy of Sciences Jilin Changchun 130033 China;

    CAS Key Laboratory of On-orbit Manufacturing and Integration for Space Optics System Changchun Institute of Optics Fine Mechanics and Physics Chinese Academy of Sciences Jilin Changchun 130033 China;

    CAS Key Laboratory of On-orbit Manufacturing and Integration for Space Optics System Changchun Institute of Optics Fine Mechanics and Physics Chinese Academy of Sciences Jilin Changchun 130033 China;

    CAS Key Laboratory of On-orbit Manufacturing and Integration for Space Optics System Changchun Institute of Optics Fine Mechanics and Physics Chinese Academy of Sciences Jilin Changchun 130033 China Center of Materials Science and Optoelectronics Engineering University of Chinese Academy of Sciences Beijing 100049 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Moment wheel assembly; MWA; Microvibration; Parameter identification; Structural coupling;

    机译:力矩轮组装;MWA;微塑料;参数识别;结构耦合;

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