• DocumentCode
    3852587
  • Title

    Field-Data-Based Modeling of Medium-Frequency Induction Melting Furnaces for Power Quality Studies

  • Author

    İlker Yilmaz;Özgül Salor;Muammer Ermis;Işık Cadirci

  • Author_Institution
    Department of Electrical and Electronics Engineering, Middle East Technical University, Ankara, Turkey
  • Volume
    48
  • Issue
    4
  • fYear
    2012
  • Firstpage
    1215
  • Lastpage
    1224
  • Abstract
    In this paper, the coreless medium-frequency induction melting furnace (IMF) system is represented by alternative field-data-based models, developed specifically for power quality studies. The IMF operation has been represented by a variable series RL circuit, to model the fundamental components of electrical quantities, and a shunt-connected current source, to model the generated harmonics and interharmonics over a typical melting cycle. Both the sinusoidal coding method applied to the major harmonics and interharmonics in the supply line currents obtained from field measurements and the raw data have been used in the developed models. It has been shown that the sinusoidal coding method can be used to satisfactorily represent the operation of the IMF system as seen from the supply terminals, with a minimum data storage requirement, and can be used to construct efficient IMF databases for power quality studies. The power quality problems of the IMF system, particularly the problematic time-varying interharmonic voltage distortion, and the interaction of those time-varying interharmonic currents with the passive shunt filter installations connected to the same bus have been investigated in detail, using the developed models.
  • Keywords
    "Harmonic analysis","Power harmonic filters","Encoding","Integrated circuit modeling","Current measurement","Load modeling","Power quality"
  • Journal_Title
    IEEE Transactions on Industry Applications
  • Publisher
    ieee
  • ISSN
    0093-9994
  • Type

    jour

  • DOI
    10.1109/TIA.2012.2199732
  • Filename
    6200843