This work presents the theoretical and practical comparison of linear and nonlinear control laws for the direct power control of a grid-connected double fed induction generator (DFIG), based wind energy conversion system (WECS) under different operating modes. We will show the improvement brought by the super twisting based high order sliding mode control to mitigate the chattering phenomenon, due to the high switching frequency. It will also avoid the hyperlink of the controller settings to the system’s mathematical model and will reduce the sensibility to external disturbances. The overall structure of the proposed control requires the use of the DFIG simplified model with field-oriented control (FOC). This last allows an instantaneous decoupled control of the DFIG stator active and reactive power by acting on dq rotor currents (Iqr , Idr ) respectively. In the preliminary tests, a comparative study is conducted to verify the superior performance of the proposed WECS control scheme during various operating modes including the maximum power point tracking MPPT mode. The study reveals the effectiveness of each implemented control law with its advantages and drawbacks.


    Access

    Download


    Export, share and cite



    Title :

    Improved Super Twisting Based High Order Direct Power Sliding Mode Control of a Connected DFIG Variable Speed Wind Turbine


    Contributors:

    Publication date :

    2021-10-29


    Remarks:

    Periodica Polytechnica Electrical Engineering and Computer Science; Vol. 65 No. 4 (2021); 352-372 ; 2064-5279 ; 2064-5260


    Type of media :

    Article (Journal)


    Type of material :

    Electronic Resource


    Language :

    English



    Classification :

    DDC:    629



    A Reduced-Order Generalized Proportional Integral Observer-based Resonant Super-twisting Sliding Mode Control for Grid-Connected Power Converters

    Lu, Jinghang / Savaghebi, Mehdi / Ghias, Amer Mohammad Yusuf Mohammad et al. | BASE | 2021

    Free access


    Robust Sliding Mode H∞ Controller of DFIG Based on Variable Speed Wind Energy Conversion System

    Saihi, Lakhdar / Berbaoui, Brahim / Glaoui, Hachemi et al. | BASE | 2019

    Free access

    Control of wind turbine based on DFIG using Fuzzy-PI and Sliding Mode controllers

    Hamane, B. / Doumbia, M. L. / Bouhamida, M. et al. | IEEE | 2014