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Active Vibration Control of Shell Structure Subjected to Internal Unbalanced Excitation

내부 불평형 기진력을 갖는 원통형 구조물의 능동진동제어

  • Received : 2016.12.07
  • Accepted : 2017.02.14
  • Published : 2017.04.20

Abstract

This paper is concerned with the active vibration control of shell structure that is subjected to internal unbalanced excitation by using active mounts and accelerometers. The unbalanced excitation is caused by a rotating unbalanced mass. The control algorithm considered in this study is the negative acceleration feedback (NAF) control. A simplified dynamic model was derived to verify the effectiveness of the NAF control. Four actuators and four accelerometers were mounted on the shell structure, so that the multiple-input and multiple-output (MIMO) NAF controller was designed by both centralized and decentralized ways. Numerical results show that both the decentralized and centralized NAF controllers are effective. Based on the numerical simulation, the proposed decentralized NAF controller was applied to the real shell structure. Experimental results show that the proposed decentralized NAF controller can effectively suppress vibrations of the shell structure.

Keywords

References

  1. Fanson, J. L. and Caughey, T. K., 1987, Positive Position Feedback Control for Large Space Structures, Transactions of the Journal American Institute of Aeronautics and Astronautics, Vol. 28, No. 4, pp. 717-724.
  2. Kwak, M. K., Han, S. B. and Heo, S., 2004, The Stability Conditions, Performance and Design Methodology for the Positive Position Feedback Controller, Transactions of the Korean Society for Noise and Vibration Engineering, Vol. 14, No. 3, pp. 208-213. https://doi.org/10.5050/KSNVN.2004.14.3.208
  3. Han, S. B., Kwak, M. K. and Yun, S. I., 1997, Active Vibration Control of Multi-mode Forced Vibration Using PPF Control Technique, Transactions of the Korean Society for Noise and Vibration Engineering, Vol. 7, No. 6, pp. 1007-1013.
  4. Kwak, M. K., 1998, Comparison of the Multiple PPF Control and the Modified LQG Control for the Active Vibration Suppression of Intelligent Structures, Transactions of the Korean Society for Noise and Vibration Engineering, Vol. 8, No. 6, pp. 1121-1129.
  5. Kwak, M. K., Ra, W. K. and Yoon, K. J., 1997, Vibration Suppression of Smart Structures Using a Combined PPF-SRF Control Technique, Transactions of the Korean Society for Noise and Vibration Engineering, Vol. 7, No. 5, pp. 811-817.
  6. Heo, S., Lee, S. B., Kwak, M. K. and Baek, K. H., 2004, Real-time Active Vibration Control of Smart Structure Using Adaptive PPF Controller, Transactions of the Korean Society for Noise and Vibration Engineering, Vol. 14, No. 4, pp. 267-275. https://doi.org/10.5050/KSNVN.2004.14.4.267
  7. Yang, D. H., Kwak, M. K., Kim, J. H., Park, W. H. and Sim, H. S., 2010, A Controllers Comparison Experiment For Active-mount Control, Proceedings of the KSNVE Annual Fall Conference, pp. 324-329.
  8. Yang, D. H., Kwak, M. K., Kim, J. H., Park, W. H. and Sim, H. S., 2010, Active Vibration Control Experiment of Cantilever Using Active Linear Actuator for Active Engine Mount, Transactions of the Korean Society for Noise and Vibration Engineering, Vol. 20, No. 12, pp. 1176-1182. https://doi.org/10.5050/KSNVE.2010.20.12.1176
  9. Yang, D. H., Kwak, M. K., Kim, J. H., Park, W. H. and Sim, H. S., 2010, Active Vibration Control Experiment on Vehicle by Engine RPM linked MIMO PPF Controller, Active Vibration Control Experiment on Vehicle by Engine RPM linked MIMO PPF Controller, pp. 179-180.
  10. Shin, J. H., Kwak, M. K., Talib, E. and Heo, S., 2016, Design and Experiment of Acceleration Feedback Control, Proceedings of the KSNVE Annual Spring Conference, pp. 138-143.