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Model of centrifugal effect and attitude maneuver stability of a coupled rigid-flexible system

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Abstract

The influences of nonlinear centrifugal force to large overall attitude motion of coupled rigid-flexible system was investigated. First the nonlinear model of the coupled rigid-flexible system was deduced from the idea of “centrifugal potential field”, and then the dynamic effects of the nonlinear centrifugal force to system attitude motion were analyzed by approximate calculation; At last, the Lyapunov function based on energy norm was selected, in the condition that only the measured values of attitude and attitude speed are available, and it is proved that the PD feedback control law can ensure the attitude stability during large angle maneuver.

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References

  1. Ma Xingrui, Wang Benli, Gou Xinyu, et al.Spacecraft Dynamics—Ome Problems, Advancing and Application [M]. Science Press, Beijing, 2001 (in Chinese).

    Google Scholar 

  2. Kane T R, Ryan R R, Banerjee A K. Dynamics of a cantilever beam attached to a moving base[J].Journal of Guidance, Control and Dynamics, 1987,10(2): 139–150.

    Article  Google Scholar 

  3. Likins P W. Finite element appendage equations for hybrid coordinate dynamic analysis[J].J of Solids and Structures, 1972,8: 709–731.

    Article  Google Scholar 

  4. Sakawa Y, Luo Zhenghua. Modeling and control of coupled bending and torsional vibration of flexible beams[J].IEEE Trans on Automatic Control, 1989,34(9): 970–977.

    Article  MATH  Google Scholar 

  5. Enrique Barbieri, Umit Ozguner. Unconstrained and constrained mode expansions for a flexible slewing link[J].Transaction of ASME, 1988,110(6): 416–421.

    Google Scholar 

  6. Mörgul Ö. Orientation and stabilization of a flexible beam attached to a rigid body: planar motion[J].IEEE Trans on Automatic Control, 1991,36(8): 953–962.

    Article  Google Scholar 

  7. Bloch A M. Stability analysis of a rotating flexible system[J].Acta Appli Mathe, 1989,15(8): 211–234.

    Article  MATH  MathSciNet  Google Scholar 

  8. Xiao Shifu, Chen Bin. On characteristics of modal analysis for flexible appendage of a typical rigidflexible coupling system[J].Chinese Space Science and Technology, 1998,18(4): 8–13 (in Chinese).

    Google Scholar 

  9. Hu Zhendong, Hong Jiazhen. Modeling and analysis of a coupled rigid-flexible system[J].Applied Mathematics and Mechanics (English Edition), 1999,20(10): 1087–1093.

    MathSciNet  Google Scholar 

  10. Li Zhibin. Dynamic Characteristics Analysis and Experiment Research of Rigid-Flexible-Control Coupling System[D]. Ph D Dissertation. Tsinghua University, Beijing, 2002 (in Chinese).

    Google Scholar 

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Correspondence to Li Zhi-bin.

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Communicated by MA Xing-rui

Project supported by the National Natural Science Foundation of China (Nos. 10372015, 90405017 and 10302013)

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Zhi-bin, L., Zhao-lin, W., Tian-shu, W. et al. Model of centrifugal effect and attitude maneuver stability of a coupled rigid-flexible system. Appl Math Mech 26, 594–603 (2005). https://doi.org/10.1007/BF02466333

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  • DOI: https://doi.org/10.1007/BF02466333

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Chinese Library Classification

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2000 Mathematics Subject Classification

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