• DocumentCode
    1154788
  • Title

    Equivalency of Lightning Return-Stroke Models Employing Lumped and Distributed Current Sources

  • Author

    Maslowski, Grzegorz ; Rakov, Vladimir A.

  • Author_Institution
    Dept. of Electr. & Comput. Eng., Univ. of Florida, Rzeszow
  • Volume
    49
  • Issue
    1
  • fYear
    2007
  • Firstpage
    123
  • Lastpage
    132
  • Abstract
    We show that any engineering return-stroke model can be expressed, using an appropriate continuity equation, in terms of either lumped or distributed current sources with the resultant longitudinal-current distribution along the channel being the same. This property can be viewed as the duality of engineering models. The conversion alters the actual-corona current (if any) of the model. For lumped-source (LS) models the actual-corona current is unipolar and directed radially out of the channel core, while for distributed-source (DS) models it is unipolar and directed into the channel core. For LS models converted to DS models and for the Diendorfer-Uman (DU) model converted to the equivalent LS model, the corona current is the sum of the negated actual-corona current (if any) and a fictitious-corona current, the latter being bipolar. For the transmission-line (TL) model (no longitudinal current attenuation with height) expressed in terms of DSs, there is only a fictitious bipolar corona current component. Conversion of the traveling-current source (TCS) and Bruce-Golde (BG) models to equivalent LS models involves replacement of the actual, unipolar corona current with a fictitious one, the latter current being bipolar near the channel base and unipolar at higher altitudes
  • Keywords
    corona; current distribution; lightning; Bruce-Golde models; Diendorfer-Uman model; actual-corona current; continuity equation; distributed current sources; lightning return-stroke models; lumped-source models; resultant longitudinal-current distribution; transmission-line model; traveling-current source; unipolar corona current; Attenuation; Corona; Decision support systems; Electromagnetic propagation; Equations; Impedance; Lightning; Transmission lines; Corona sheath; current continuity equation; distributed sources (DSs); duality; lightning; lumped source (LS); return-stroke model;
  • fLanguage
    English
  • Journal_Title
    Electromagnetic Compatibility, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9375
  • Type

    jour

  • DOI
    10.1109/TEMC.2006.890170
  • Filename
    4106092