• DocumentCode
    1676325
  • Title

    Modelling Rail Vehicle Dynamics Using a Novel 2D Wheel-Rail Contact Model

  • Author

    Anyakwo, Arthur ; Pislaru, Cristina ; Ball, Aaron

  • Author_Institution
    Inst. of Railway Res., Univ. of Huddersfield, Huddersfield, UK
  • fYear
    2013
  • Firstpage
    463
  • Lastpage
    468
  • Abstract
    This paper describes efficient modeling and simulation method which can be employed for fast and real time simulations of hybrid intelligent systems from railway vehicles using a novel 2D wheel-rail contact model. It presents the development of a novel 2D wheel-railcontact model where the variables related to the geometry part are determined by solving a reduced number of mathematical equations and the wheel-rail normal contact forces are calculated without approximating the contact angle. The results are stored in a lookup table accessed during the dynamic analysis of wheel-sets, bogies, or trains so the computational time is reduced. The process of solving the ordinary differential equations representing the bogie dynamic behaviour becomes faster by using the lookup table. The proposed 2D wheel-rail contact model could be used for fast and real-time simulations of complex and nonlinear wheel-rail contact mechanics and advanced condition monitoring systems for railway vehicles.
  • Keywords
    condition monitoring; contact angle; differential equations; railways; real-time systems; table lookup; vehicle dynamics; wheels; 2D wheel-rail contact model; bogie dynamic behaviour; bogies; computational time; condition monitoring system; contact angle; dynamic analysis; hybrid intelligent systems; lookup table; mathematical equations; ordinary differential equations; rail vehicle dynamics; real time simulation; trains; wheel-rail contact mechanics; wheel-rail normal contact forces; wheel-sets; Creep; Geometry; Mathematical model; Rail transportation; Rails; Vehicle dynamics; Wheels; component; creep forces; lateral displacement; mathematical modelling; railway vehicle dynamics; tangential forces; wheel-rail contact mechanics;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Modelling Symposium (EMS), 2013 European
  • Conference_Location
    Manchester
  • Print_ISBN
    978-1-4799-2577-3
  • Type

    conf

  • DOI
    10.1109/EMS.2013.78
  • Filename
    6779889