• DocumentCode
    1307575
  • Title

    Robust Neuro-Sliding Mode Multivariable Control Strategy for Powered Wheelchairs

  • Author

    Nguyen, Tuan Nghia ; Su, Steven ; Nguyen, Hung T.

  • Author_Institution
    Fac. of Eng., Univ. of Technol., Sydney, NSW, Australia
  • Volume
    19
  • Issue
    1
  • fYear
    2011
  • Firstpage
    105
  • Lastpage
    111
  • Abstract
    This paper proposes an advanced robust multivariable control strategy for a powered wheelchair system. The new control strategy is based on a combination of the systematic triangularization technique and the robust neuro-sliding mode control approach. This strategy effectively copes with parameter uncertainties and external disturbances in real-time in order to achieve robustness and optimal performance of a multivariable system. This novel strategy reduces coupling effects on a multivariable system, eliminates chattering phenomena, and avoids the plant Jacobian calculation problem. Furthermore, the strategy can also achieve fast and global convergence using less computation. The effectiveness of the new multivariable control strategy is verified in real-time implementation on a powered wheelchair system. The obtained results confirm that robustness and desired performance of the overall system are guaranteed, even under parameter uncertainty and external disturbance effects.
  • Keywords
    handicapped aids; medical computing; medical control systems; multivariable control systems; wheelchairs; chattering phenomena elimination; coupling effect reduction; global convergence; neurosliding mode control strategy; parameter uncertainties; plant Jacobian calculation problem; powered wheelchairs; robust multivariable control strategy; systematic triangularization technique; Angular velocity; Artificial neural networks; Equations; MIMO; Robustness; Transfer functions; Wheelchairs; Multivariable system; neural network; neuro-sliding mode control; powered wheelchair; Algorithms; Equipment Design; Equipment Failure Analysis; Feedback; Multivariate Analysis; Neural Networks (Computer); Robotics; Wheelchairs;
  • fLanguage
    English
  • Journal_Title
    Neural Systems and Rehabilitation Engineering, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1534-4320
  • Type

    jour

  • DOI
    10.1109/TNSRE.2010.2069104
  • Filename
    5559477