• DocumentCode
    995755
  • Title

    One-dimensional fluid and circuit simulation of an AC plasma display cell

  • Author

    Veerasingam, Ramana ; Campbell, Robert B. ; McGrath, Robert T.

  • Author_Institution
    Pennsylvania State Univ., University Park, PA, USA
  • Volume
    23
  • Issue
    4
  • fYear
    1995
  • fDate
    8/1/1995 12:00:00 AM
  • Firstpage
    688
  • Lastpage
    697
  • Abstract
    A one-dimensional multispecies model of a helium filled AC plasma display cell is described. The model includes a continuity equation for each species. Poisson´s equation and a circuit equation. The fill gas is helium for which the cross sections for ionization and excitation for the various atomic states are well known. The reaction rates for the different species were parametrized as functions of E/N using a zero-dimensional spatial and two velocity multispecies Boltzmann kinetic code. Calculations are performed using address and sustain voltages operating at a frequency of 50 kHz to model the pulse behavior of a dielectric barrier discharge which occurs over a time scale on the order of 200 ns or less. The code simulates multipulse behavior and shows reasonably good agreement with experimental data. The simulations show that the circuit filters out the discharge dynamics and that the pulse width of the discharge current depends on the circuit RC time constant. Using a 123 V sustain voltage, the calculated discharge current is 0.4 A with a full width at half maximum (FWHM) of 28 ns. Experimental values using a 120 V sustain voltage are 0.32 A discharge current and 42 ns FWHM
  • Keywords
    circuit analysis computing; gas-discharge displays; plasma devices; plasma kinetic theory; plasma simulation; 0.4 A; 123 V; 50 kHz; He filled AC plasma display cell; Poisson´s equation; circuit RC time constant; circuit simulation; continuity equation; dielectric barrier discharge; discharge current pulse width; discharge dynamics; excitation cross sections; ionization cross sections; multipulse behavior; one-dimensional fluid simulation; one-dimensional multispecies model; reaction rates; two velocity multispecies Boltzmann kinetic code; zero-dimensional spatial code; Circuit simulation; Dielectrics; Frequency; Helium; Ionization; Kinetic theory; Plasma displays; Plasma simulation; Poisson equations; Voltage;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/27.467991
  • Filename
    467991