• DocumentCode
    1513734
  • Title

    A Frequency Demodulation Approach to Induction Motor Speed Detection

  • Author

    Gao, Zhi ; Turner, Larry ; Colby, Roy S. ; Leprettre, Benoit

  • Author_Institution
    Strategy & Innovation, Schneider Electr., Knightdale, NC, USA
  • Volume
    47
  • Issue
    4
  • fYear
    2011
  • Firstpage
    1632
  • Lastpage
    1642
  • Abstract
    Rotor slot harmonics are found in the stator current waveforms for most squirrel-cage induction motors. These harmonics are caused by the finite number of rotor slots in a motor, and their frequencies are inherently correlated with the motor´s rotational speed. A frequency demodulation approach is proposed in this paper to continuously and accurately track the rotational speed for induction motors that are operated at either dynamic or steady-state conditions from fixed-frequency power supplies. First, a complex current vector is synthesized from polyphase electrical current measurements. Second, a local oscillator and a mixer are cascaded with a digital filter to heterodyne a specific rotor slot harmonic and suppress adjacent interferences. A finite impulse response differentiator is then employed as a frequency demodulator to approximate the time derivative of the phase of this specific rotor slot harmonic and to resolve its instantaneous frequency. Finally, the induction motor speed is calculated from this resolved instantaneous rotor slot harmonic frequency. Experimental results demonstrate that the proposed scheme is capable of interleaving data acquisition with real-time computation, iteratively estimating motor speed on a sample-by-sample basis.
  • Keywords
    demodulation; electric current measurement; rotors; squirrel cage motors; complex current vector; fixed-frequency power supplies; frequency demodulation approach; oscillator; polyphase electrical current measurements; rotor slot harmonics; squirrel-cage induction motor speed detection; stator current waveforms; steady-state conditions; Demodulation; Harmonic analysis; IIR filters; Induction motors; Power harmonic filters; Rotors; Condition monitoring; frequency demodulation; induction motor; rotor slot harmonics; speed detection; superheterodyne receiver;
  • fLanguage
    English
  • Journal_Title
    Industry Applications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-9994
  • Type

    jour

  • DOI
    10.1109/TIA.2011.2153813
  • Filename
    5765674