• DocumentCode
    1612726
  • Title

    Hysteresis modeling of magneto-rheological (MR) fluid damper by self tuning fuzzy control

  • Author

    Ahn, Kyoung Kwang ; Islam, Muhammad Aminul ; Truong, D.Q.

  • Author_Institution
    Dept. of Mech. & Automotive Eng., Ulsan Univ., Ulsan
  • fYear
    2008
  • Firstpage
    2628
  • Lastpage
    2633
  • Abstract
    Magneto-rheological (MR) fluid damper is a semi-active control device that has recently received more attention by the vibration control community. But inherent nonlinear hysteresis character of magneto-rheological fluid dampers is one of the challenging aspects for utilizing this device to achieve high system performance. So the development of accurate model is necessary to take the advantage their unique characteristics. Research by others has shown that a system of nonlinear differential equations can successfully be used to describe the hysteresis behavior of the MR damper. The focus of this paper is to develop an alternative method for modeling a damper in the form of centre average fuzzy interference system, where back propagation learning rules are used to adjust the weight of network. The inputs for the model are used from the experimental data. The resulting fuzzy interference system is satisfactorily represents the behavior of the MR fluid damper with reduced computational requirements. Use of the neuro-fuzzy model increases the feasibility of real time simulation.
  • Keywords
    backpropagation; control nonlinearities; fuzzy control; fuzzy reasoning; hysteresis; magnetorheology; nonlinear differential equations; self-adjusting systems; vibration control; back propagation learning; fuzzy interference system; hysteresis modeling; magneto-rheological fluid damper; nonlinear differential equations; nonlinear hysteresis character; self tuning fuzzy control; semi-active control device; vibration control; Damping; Differential equations; Fuzzy control; Fuzzy systems; Hysteresis; Interference; Magnetic devices; Shock absorbers; System performance; Vibration control; MR fluid (= Magneto-Rheological fluid); modeling; self tuning fuzzy;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control, Automation and Systems, 2008. ICCAS 2008. International Conference on
  • Conference_Location
    Seoul
  • Print_ISBN
    978-89-950038-9-3
  • Electronic_ISBN
    978-89-93215-01-4
  • Type

    conf

  • DOI
    10.1109/ICCAS.2008.4694300
  • Filename
    4694300