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Research on the disturbance generated by a solar array drive assembly driving a flexible system

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Treść / Zawartość
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The present work is aimed at presenting the disturbance generated by a solar array drive assembly (SADA) driving a flexible system. Firstly, the vibration equation of SADA is obtained by simplifying and linearizing the electromagnetic torque. Secondly, the disturbance model of SADA driving a discrete flexible system is achieved based on the vibration equation established. Taking a two-dof flexible system as the study object, this disturbance model is simulated and analyzed. Lastly, a continuous flexible system, which is designed to simulate the solar array, is used to illustrate the simulation method of the disturbance emitted by SADA driving a continuous flexible system. All the achievements obtained from this project will provide a theoretical basis for the prediction of the disturbance emitted by the SADA driving solar array on the orbit.
Rocznik
Strony
1001--1012
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
autor
  • School of Aeronautic Science and Engineering, Beijing University of Aeronautics and Astronautics, Beijing, China
autor
  • School of Aeronautic Science and Engineering, Beijing University of Aeronautics and Astronautics, Beijing, China
Bibliografia
  • 1. Anish N.K., Krishnan D., Moorthi S., Selvan M.P., 2012, FPGA based microstepping scheme for stepper motor in space-based solar power systems, Industrial and Information Systems, IEEE Conference, 1-5
  • 2. Bodson M., Sato J.S., Silver S.R., 2006, Spontaneous speed reversals in stepper motors, IEEE Transactions on Control Systems Technology, 14, 2, 369-373
  • 3. Chen J.P., Cheng W., Han W., 2014, Analysis and simulation of stepper motor disturbance considering structural coupling, Applied Mechanics and Materials, 526, 103-108
  • 4. Chen Y.M., 2010, Application of shape memory alloys to control the vibration of solar panels, Mechanical Engineering and Automation, 1, 173-175
  • 5. Cui G.G., 2006, The satellite modeling and analysis of dynamic characteristic of drive system of solar array, Dissertation for the Master Degree in Engineering of Harbin Institute of Technology
  • 6. Elsodany N.M., Rezeka S.F., Maharem N.A., 2011, Adaptive PID control of a stepper motor driving a flexible rotor, Alexandria Engineering Journal, 50, 2, 127-136
  • 7. Kapun A., Hace A., Jezernik K., 2007, Identification of stepping motor parameters, International Conference on “Computer as a Tool”, IEEE Conference, 1856-1863
  • 8. Letchmanan R., Economou J.T., Tsourdos A., 2005, Modelling and analysis of geared PM stepping motor for simulation of all-electric off-road vehicles, Vehicle Power and Propulsion, IEEE Conference, 301-307
  • 9. Luo Q., Li D., Zhou W., Jiang J., Yang G., Wei X., 2013, Dynamic modelling and observation of micro-vibrations generated by a Single Gimbal Control Moment Gyro, Journal of Sound and Vibration, 332, 19, 4496-4516
  • 10. Si Z.H., Liu Y.W., Li K., 2010, Research on modeling and driver design of solar array drive assembly, Aerospace Control and Application, 36, 2, 13-19
  • 11. Szolc T., Pochanke A., 2012, Dynamic investigations of electromechanical coupling effects in the mechanism driven by the stepping motor, Journal of Theoretical and Applied Mechanics, 50, 2, 653-673
  • 12. Xia L., 1994, The primary research on low-frequency resonate of step-motor and its damping methods, Journal of Shenyang Polytechnic University, 16, 3, 73-78
  • 13. Yang T.Y., Wang H., Xu F., 2007, Micro-stepping drive method study of two-phase step motors, Micromotors Servo Technique, 40, 9, 69-71
  • 14. Yang Y.L., Cheng W., Wu S.J., Wang G.Y., 2010, Experiment and simulation of electromagnetic stiffness for stepper motor, Applied Mechanics and Materials, , 29, 1567-1573
  • 15. Zhu S.Y., Lei Y.J., Wu X.F., Zhang D.P., 2015, Influence analysis on dynamic characteristic parameters of solar array drive system, Journal of Vibration Engineering, 28, 2, 183-189
  • 16. Zhu S.Y., Xie Y., Lei Y.J., 2014, Characteristic analysis of disturbance aroused by solar array tracking drive, Journal of National University of Defense Technology, 36, 1, 27-33
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniajacą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bbdd1853-0efa-43ad-8ce7-3e4267dc0187
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