• Title of article

    An improved fault-tolerant control scheme for PWM inverter-fed induction motor-based EVs

  • Author/Authors

    Tabbache، نويسنده , , Bekheïra and Benbouzid، نويسنده , , Mohamed and Kheloui، نويسنده , , Abdelaziz and Bourgeot، نويسنده , , Jean-Matthieu and Mamoune، نويسنده , , Abdeslam، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    8
  • From page
    862
  • To page
    869
  • Abstract
    This paper proposes an improved fault-tolerant control scheme for PWM inverter-fed induction motor-based electric vehicles. The proposed strategy deals with power switch (IGBTs) failures mitigation within a reconfigurable induction motor control. To increase the vehicle powertrain reliability regarding IGBT open-circuit failures, 4-wire and 4-leg PWM inverter topologies are investigated and their performances discussed in a vehicle context. The proposed fault-tolerant topologies require only minimum hardware modifications to the conventional off-the-shelf six-switch three-phase drive, mitigating the IGBTs failures by specific inverter control. Indeed, the two topologies exploit the induction motor neutral accessibility for fault-tolerant purposes. The 4-wire topology uses then classical hysteresis controllers to account for the IGBT failures. The 4-leg topology, meanwhile, uses a specific 3D space vector PWM to handle vehicle requirements in terms of size (DC bus capacitors) and cost (IGBTs number). ments on an induction motor drive and simulations on an electric vehicle are carried-out using a European urban driving cycle to show that the proposed fault-tolerant control approach is effective and provides a simple configuration with high performance in terms of speed and torque responses.
  • Keywords
    electric vehicle , Inverter , Induction motor , Fault-tolerant control , IGBT failure , hysteresis control , 3D SVPWM
  • Journal title
    ISA TRANSACTIONS
  • Serial Year
    2013
  • Journal title
    ISA TRANSACTIONS
  • Record number

    2383322