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lirmm-00655894, version 1

Toward Lower Limbs Movement Restoration with Input-Output Feedback Linearization and Model Predictive Control Through Functional Electrical Stimulation

Samer Mohammed 12, Philippe Poignet (, http://www.lirmm.fr/~poignet/) 12, Philippe Fraisse (, http://www.lirmm.fr/~fraisse) 12, David Guiraud (Author to contact preferably, http://www.lirmm.fr/~guiraud) 12

Control Engineering Practice 20 (2012) 182-195

Abstract: Functional electrical stimulation (FES) is used to excite paralyzed muscles that are no longer controlled by patients with spinal cord injuries (SCI). Appropriate stimulation patterns are chosen to stimulate intact muscles, in order to extend their overall performance, postponing thus the muscular fatigue during the daily activities such as standing, standing up, sitting down and walking. This paper presents the modeling and the control of a knee joint actuated by the quadriceps muscles. Appropriate stimulation patterns are computed as a function of the desired lower-limb knee joint movements. Parameters of the biomechanical model are identified based on experimental kinematic data. Model predictive control (MPC) is applied to the inputâ€"output feedback linearized (IOFL) system. IOFL allows linearization by inverting the system dynamics through a nonlinear feedback transformation. The described control approach is validated through different simulation scenarios for knee flexionâ€"extension. Internal dynamics stability is mathematically proved and performances are compared to those produced by classical pole placements method. The controller has shown satisfactory results in terms of regulation, stability and robustness with respect to external disturbances.

  • 1:  Laboratoire d'Informatique de Robotique et de Microélectronique de Montpellier (LIRMM)
  • CNRS : UMR5506 – Université Montpellier II - Sciences et techniques
  • 2:  DEMAR (INRIA Sophia Antipolis)
  • INRIA – CNRS : UMR5506 – Université Montpellier II - Sciences et techniques – Université Montpellier I
  • Domain : Engineering Sciences/Automatic
    Life Sciences/Bioengineering
  • Keywords : Model predictive control
 
  • lirmm-00655894, version 1
  • oai:hal-lirmm.ccsd.cnrs.fr:lirmm-00655894
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  • Submitted on: Tuesday, 3 January 2012 09:29:21
  • Updated on: Friday, 13 January 2012 10:57:22