• DocumentCode
    1712120
  • Title

    Hybrid input shaping and PD-type Fuzzy Logic control scheme of a gantry crane system

  • Author

    Ahmad, Mashraf A. ; Nasir, A. N Kasruddin ; Hambali, Najidah ; Ishak, Haszuraidah

  • Author_Institution
    Lebuhraya Tun Razak, Univ. Malaysia Pahang, Kuantan, Malaysia
  • fYear
    2009
  • Firstpage
    1051
  • Lastpage
    1056
  • Abstract
    This paper presents investigations into the development of hybrid control schemes for input tracking and anti-swaying control of a gantry crane system. A nonlinear overhead gantry crane system is considered and the dynamic model of the system is derived using the Euler-Lagrange formulation. To study the effectiveness of the controllers, initially a collocated PD-type Fuzzy Logic control is developed for cart position control of gantry crane. This is then extended to incorporate input shaper control schemes for anti-swaying control of the system. The positive input shapers with the derivative effects are designed based on the properties of the system. Simulation results of the response of the manipulator with the controllers are presented in time and frequency domains. The performances of the hybrid control schemes are examined in terms of level of input tracking capability, swing angle reduction and time response specifications in comparison to the PD-type Fuzzy Logic control. Finally, a comparative assessment of the control techniques is presented and discussed.
  • Keywords
    PD control; control system synthesis; cranes; feedforward; fuzzy control; nonlinear control systems; nonlinear dynamical systems; position control; tracking; Euler-Lagrange formulation; PD-type fuzzy logic control scheme; antiswaying control; cart position controller design; feedforward control; input shaper control scheme; input tracking capability; nonlinear overhead gantry crane system; swing angle reduction; system dynamic model; time response specification; Control systems; Cranes; Feedback control; Fuzzy logic; Intelligent sensors; Open loop systems; Payloads; Position control; Proportional control; Shape control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control Applications, (CCA) & Intelligent Control, (ISIC), 2009 IEEE
  • Conference_Location
    Saint Petersburg
  • Print_ISBN
    978-1-4244-4601-8
  • Electronic_ISBN
    978-1-4244-4602-5
  • Type

    conf

  • DOI
    10.1109/CCA.2009.5281187
  • Filename
    5281187