ACTIVE VIBRATION CONTROL OF UNCERTAIN PIEZOELECTRIC CANTILEVER BEAM BASED ON ADAPTIVE SLIDING MODE CONTROLLER

Mingyue Cui, Hongzhao Liu, Hualong Jiang, Wei Liu

References

  1. [1] E. Omidi and S.N. Mahmoodi, Hybrid positive feedbackcontrol for active vibration attenuation of flexible structures,IEEE/ASME Transactions on Mechatronics, 20(4), 2010,1790–1797.
  2. [2] J.M. Rodriguez-Fortun, J. Orus, J. Alfonso, F.B. Gimeno,and J.A. Castellanos, Flatness-based active vibration controlfor piezoelectric actuators, IEEE/ASME Transactions onMechatronics, 18(1), 2013, 221–229.
  3. [3] Y.W. Zhang, S. Hou, and Z. Zhang, J. Zang, Z.Y. Ni,Y.Y. Teng, and L.Q. Chen, Nonlinear vibration absorption oflaminated composite beams in complex environment, NonlinearDynamics, 99(4), 2020, 2605–2622.
  4. [4] S. Wang, Q. Song, and Z. Liu, Vibration suppression of thin-walled workpiece milling using a time-space varying PD controlmethod via piezoelectric actuator, International Journal ofAdvanced Manufacturing Technology, 105(7), 2019, 2843–2856.
  5. [5] S.M.H. Baygi, A. Karsaz, and J. Faraji, A new hybrid optimal-based robust and proportional-integral-derivative control forvibration control of a seismic-excited structure, MechatronicSystems and Control, 49(4), 2021, 205–213.
  6. [6] Y. Pu, H. Zhou, and Z. Meng, Multi-channel adaptive activevibration control of piezoelectric smart plate with onlinesecondary path modelling using PZT patches, MechanicalSystems and Signal Processing, 120, 2019, 166–179.
  7. [7] J. Sun, W. Chen, and X. Chen, Model reference adaptive controlwith adjustable gain for piezoelectric actuator, EuropeanJournal of Control, 67(9), 2022, 100712.1–100712.11.
  8. [8] V.T. Minh, R. Moezzi, J. Cyrus, and J. Hlava, Fuzzy systemfor clutch engagement and vibration control in parallel hybridelectric vehicle, Mechatronic Systems and Control, 51(1), 2023,25–33.
  9. [9] R. Jha and J. Rower, Experimental investigation of activevibration control using neural networks and piezoelectricactuators, Smart Materials & Structures, 1(1), 2002, 115–121.
  10. [10] Y. Lu, M. Amabili, J. Wang, F. Yang, and H. Tzou,Active vibration control of a polyvinylidene fluoride laminatedmembrane plate mirror, Journal of Vibration and Control,25(8), 2019, 2611–2626.
  11. [11] Y. Lu, Q. Shao, F. Yang, H. Yue, and R. Liu, Optimal vibrationcontrol of membrane structures with in-plane polyvinylidenefluoride actuators, International Journal of Structural Stabilityand Dynamics, 20(8), 2020, 2050095.
  12. [12] Y. Lu, H. Yue, Z. Deng, and H. Tzou, Distributed microscopicactuation analysis of deformable plate membrane mirrors,Mechanical Systems and Signal Processing, 100, 2018, 57–84.
  13. [13] H. Yue, Z. Deng, Y. Lu, and H. Tzou, Distributed sensing signalanalysis of deformable plate/membrane mirrors, MechanicalSystems and Signal Processing, 96, 2017, 393–424.
  14. [14] L. Li, G. Song, and J. Ou, Adaptive fuzzy sliding mode basedactive vibration control of a smart plate with mass uncertainty,Structural Control & Health Monitoring, 18, 2011, 40–52.
  15. [15] Z.C. Qiu, H.X. Wu, and D. Zhang, Experimental researches onsliding mode active vibration control of flexible piezoelectriccantilever plate integrated gyroscope, Thin-Walled Structures,47(8–9), 2009, 836–846.
  16. [16] J. Yang, Z. Liu, X. Cui, S Qu, C Wang, Z. Lanwei, and G.Chen, Experimental study of adaptive sliding mode control forvibration of a flexible rectangular plate, International Journalof Aeronautical & Space Science, 16(1), 2015, 28–40.
  17. [17] Y. Li, C. Tang, S. Peeta, and Y. Wang, Integral-sliding-mode braking control for connected vehicle platoon: Theoryand application, IEEE Transactions on Industrial Electronics,66(6), 2019, 4618–4628.
  18. [18] L. Mesny, S. Baguet, and S. Chesne, Nonlinear vibrationof a sliding-mode- controlled structure: Simulation andexperiment, Mechanical Systems and Signal Processing, 211,2024, 111209.1–111209.19.
  19. [19] E.D. Engeberg and S.G. Meek, Adaptive sliding modecontrol for prosthetic hands to simultaneously prevent slipand minimize deformation of grasped objects, IEEE/ASMETransactions on Mechatronics, 18(1), 2013, 376–385.
  20. [20] M. Cui, W. Liu, H. Liu, and H. Jiang, Extended state observer-based adaptive sliding mode control of differential-drivingmobile robot with uncertainties, Nonlinear Dynamics, 83(1–2),2016, 667–683.
  21. [21] X.H. Zhang, Adaptive backstepping control of induction motorswith parameter and load uncertainties, Control and Decision,21(12), 2006, 1379–1386.
  22. [22] M. Cui, H. Liu, H. Jiang, Y. Zheng, and X. Wang, Activevibration optimal control of piezoelectric cantilever beamwith uncertainties, Measurement and Control, 56(5–6), 2022,359–369.
  23. [23] W. Han and B.D. Reddy, Plasticity: Mathematical Theoryand Numerical Analysis (Second Edition). (New York, NY:Springer, 2013).
  24. [24] J. Slotine and W. Li, Applied Nonlinear Control. (New Jersey,NJ: Prentice-Hall, 1991).
  25. [25] W.T. Thomson and M.D. Dahleh, Theory of Vibration withApplications Fifth Edition, (Beijing: Tsinghua UniversityPress), 2005.

Important Links:

Go Back