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An upper limb musculoskeletal model using bond graphs for rotorcraft-pilot couplings analysis

Communication avec acte
Auteur
TOD, Georges
BARRE, Pierre-Jean
ccGOMAND, Julien
178374 Laboratoire des Sciences de l'Information et des Systèmes : Ingénierie Numérique des Systèmes Mécaniques [LSIS- INSM]
ccMALBURET, François

URI
http://hdl.handle.net/10985/9042
Date
2014

Résumé

Under certain flight conditions, a rotorcraft fuselage motions and vibrations might interact with its pilot voluntary and involuntary actions leading to potentially dangerous dynamic instabilities known as rotorcraft-pilot couplings (RPCs). A better understanding of this phenomenon could be achieved by being able to reproduce the phenomenon during simulations. Design guidelines could be then obtained at an early stage of development of rotorcrafts improving flight safety for pilots and passengers. In this work, an upper limb musculoskeletal model using bond graphs is presented. It is then integrated in a larger aeroelastic rotorcraft bond graph model that allows simulating pilot-rotor-fuselage couplings under several flight conditions. Simulations are performed and compared to literature’s models and experimental data.

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Nom:
LSIS-INSM_BBIC_Malburet_2014.pdf
Taille:
408.4Ko
Format:
PDF
Description:
Article conférence SIMBIO-M 2014
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  • Modeling Stiffness and Damping in Rotational Degrees of Freedom Using Multibond Graphs 
    Communication avec acte
    TOD, Georges; BARRE, Pierre-Jean; ccGOMAND, Julien; ccMALBURET, François (2013)
    A contribution is proposed for the modeling of mechanical systems using multibond graphs. When modeling a physical system, it may be needed to catch the dynamic behavior contribution of the joints between bodies of the ...
  • An Energetic Approach to Aeroelastic Rotorcraft-Pilot Couplings Analysis 
    Communication avec acte
    TOD, Georges; BARRE, Pierre-Jean; BOUDON, Benjamin; ccGOMAND, Julien; ccMALBURET, François (2013)
    This paper describes an energetic method using multibond graphs to model multi-physical systems. Its potential in building physical meaningful graphs that represent equivalent mathematical models of classic analytical ...
  • Understanding pilot biodynamical feedthrough coupling in helicopter adverse roll axis instability via lateral cyclic feedback control 
    Article dans une revue avec comité de lecture
    TOD, Georges; PAVEL, Marilena; BARRE, Pierre-Jean; ccGOMAND, Julien; ccMALBURET, François (Elsevier, 2016)
    The paper reassesses the mechanism of biodynamical feedthrough coupling to helicopter body motion in lateral-roll helicopter tasks. An analytical bio-aeroelastic pilot–vehicle model is first developed and tested for various ...
  • Multi-physic system simplification method applied to a helicopter flight axis active control 
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    MARTIN, Mikael; BARRE, Pierre-Jean; ccGOMAND, Julien; ccMALBURET, François (IEEE, 2012)
    A helicopter flight axis control, which is a complex multi-physic system, is modelled using an energetic based graphical tool: the Energetic Macroscopic Representation. Elements of the system are mainly composed of passive ...
  • Complementary use of BG and EMR formalisms for multiphysics systems analysis and control 
    Communication avec acte
    CHIKHAOUI, Zeineb; ccGOMAND, Julien; ccMALBURET, François; BARRE, Pierre-Jean (ASME, 2012)
    In this paper, a complex multiphysics system is modeled using two different energy-based graphical techniques: Bond Graph and Energetic Macroscopic Representation. These formalisms can be used together to analyze, model ...

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