• DocumentCode
    3863582
  • Title

    Real time implementation of DTC based on sliding mode speed controller of an induction motor

  • Author

    Saber Krim;Soufien Gdaim;Abdellatif Mtibaa;Mohamed Faouzi Mimouni

  • Author_Institution
    Laboratory of Electronics and Microelectronics of the FSM. Polytechnic School of Engineering (PSE), BVD khalifa karoui 4054 Sahloul-Sousse, University of Sousse, Tunisia
  • fYear
    2015
  • Firstpage
    94
  • Lastpage
    100
  • Abstract
    This research work deals with the real time implementation on an Field Programmable Gate Array (FPGA) of the Direct Torque Control (DTC) of an Induction Motor (IM) utilizing a Sliding Mode controller (SMC) of the rotor speed. In several industrial applications, the speed is controlled by a Proportional Integral (PI) regulator, because of its simplicity. However, because of the model uncertainties of the motor, the stator resistance variation, and the variation of the load torque as an external disturbance, the PI controller becomes unable to guarantee the desired control performances. To overcome the PI insufficiency the SMC is proposed. SMC is featured by its capability to cope with the disturbances. Therefore, developing the SMC of speed presents the first contribution in this manuscript. The second contribution consists to implement the proposed approach referred as DTC-SMC using an FPGA due to its ability to execute this algorithm with high processing speed by adopting a parallel processing. The FPGA is proposed to overcome the DSPs and microcontrollers limitations, like the calculation delay due to its sequential processing. The DTC-SMC algorithm has been validated by simulation utilizing the Xilinx System Generator (XSG). The obtained results of simulation verify the proposed controller relative to the PI controller under load torque disturbances.
  • Keywords
    "Induction motors","Torque","Field programmable gate arrays","Mathematical model","Stators","Hysteresis","Switches"
  • Publisher
    ieee
  • Conference_Titel
    Sciences and Techniques of Automatic Control and Computer Engineering (STA), 2015 16th International Conference on
  • Type

    conf

  • DOI
    10.1109/STA.2015.7505139
  • Filename
    7505139