• DocumentCode
    1053682
  • Title

    Sensorless DTC-SVM for Induction Motor Driven by a Matrix Converter Using a Parameter Estimation Strategy

  • Author

    Lee, Kyo-Beum ; Blaabjerg, Frede

  • Author_Institution
    Chonbuk Nat. Univ., Jeonju
  • Volume
    55
  • Issue
    2
  • fYear
    2008
  • Firstpage
    512
  • Lastpage
    521
  • Abstract
    This paper presents a new direct torque controlled space vector modulated method to improve the sensorless performance of matrix converter drives using a parameter estimation scheme. The flux and torque error are geometrically combined in a new flux leakage vector to make a stator command voltage vector in a deadbeat manner. A new sensorless method of estimating the rotor speed, flux, stator resistance, and rotor resistance is derived and verified with experimental results. Common terms in the error dynamics are utilized to find a simpler error model involving some auxiliary variables. Using this error model, the state estimation problem is converted into a parameter estimation problem assuming the rotor speed is constant. The proposed adaptive schemes are determined so that the whole system is stable in the sense of Lyapunov. The effectiveness of the proposed algorithm is verified by experiments.
  • Keywords
    Lyapunov methods; induction motor drives; machine vector control; matrix convertors; parameter estimation; torque control; Lyapunov scheme; direct torque control; error dynamics; induction motor; matrix converter drive; parameter estimation scheme; rotor speed; sensorless DTC-SVM; space vector modulated method; stator command voltage vector; AC motors; Induction motor drives; Induction motors; Matrix converters; Parameter estimation; Rotors; Sensorless control; Stators; Torque control; Voltage; AC motor drives; AC–AC power conversion; observers;
  • fLanguage
    English
  • Journal_Title
    Industrial Electronics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0046
  • Type

    jour

  • DOI
    10.1109/TIE.2007.911940
  • Filename
    4444602