• DocumentCode
    695932
  • Title

    Semiactive control of base-isolated structures using a new inverse model of MR dampers

  • Author

    Bahar, Arash ; Pozo, Francesc ; Acho, Leonardo ; Rodellar, Jose ; Barbat, Alex

  • Author_Institution
    Dept. de Mat. Aplic. III, Univ. Politec. de Catalunya (UPC), Barcelona, Spain
  • fYear
    2009
  • fDate
    23-26 Aug. 2009
  • Firstpage
    1065
  • Lastpage
    1070
  • Abstract
    Magnetorheological (MR) dampers have received special attention as semi-active devices for mitigation of structural vibrations. Because of the inherent nonlinearity of these devices, it is difficult to obtain a reasonable mathematical inverse model. This paper is concerned with two related concepts. On one hand, it presents a new inverse model of MR dampers based on the normalized Bouc-Wen model. On the other hand, it considers a hybrid seismic control system for building structures, which combines a class of passive nonlinear base isolator with a semi-active control system. In this application, the MR damper is used as a semi-active device in which the voltage is updated by a feedback control loop.The management of MR dampers is performed in a hierarchical way according to the desired control force, the actual force of the dampers and its capacity to react. The control is applied to a numerical three-dimensional benchmark problem which is used by the structural control community as a state-of-the-art model for numerical experiments of seismic control attenuation. The performance indices show that the proposed semi-active controller behaves satisfactorily.
  • Keywords
    buildings (structures); earthquake engineering; feedback; magnetorheology; shock absorbers; structural engineering; vibration isolation; MR dampers; base-isolated structures; building structures; feedback control loop; hybrid seismic control system; inverse model; magnetorheological dampers; normalized Bouc-Wen model; passive nonlinear base isolator; semiactive control; structural vibration mitigation; Benchmark testing; Buildings; Damping; Earthquakes; Force; Mathematical model; Shock absorbers;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control Conference (ECC), 2009 European
  • Conference_Location
    Budapest
  • Print_ISBN
    978-3-9524173-9-3
  • Type

    conf

  • Filename
    7074546