• DocumentCode
    990095
  • Title

    Partial Discharge Pulse Propagation in Shielded Power Cable and Implications for Detection Sensitivity

  • Author

    Oussalah, Naima ; Zebboudj, Youcef ; Boggs, Steven A.

  • Volume
    23
  • Issue
    6
  • fYear
    2007
  • Firstpage
    5
  • Lastpage
    10
  • Abstract
    Boggs and Stone (1982) defined the fundamental limits to the electrical detection of corona and partial discharge (PD), i.e., wideband detection of a PD-induced pulse in the presence of thermal noise. This paper treated the effect of frequency-dependent attenuation in shielded power cable in that context. However, most of the plots in that paper were the result of numerical computations. In the same year, Stone and Boggs set out a theory for high-frequency attenuation of shielded power cable. They showed good agreement between attenuation predicted from measured material properties and measured, high-frequency attenuation of shielded power cable. Since 1982, measurements of high-frequency cable attenuation have been reported by a number of authors for a variety of cables. In addition, software tools have become available that facilitate an analytic solution for the parameters of interest. This article summarizes the theory for PD propagation in shielded power cable for both symmetric (Gaussian) and asymmetric PD-pulse waveforms, based on the assumption that the attenuation constant (dB/m or Nepers/m) of the cable is proportional to frequency. This appears to be the most complete possible analytic exposition of PD attenuation in shielded-power cable, which has obvious applications to field PD measurements of such cable.
  • Keywords
    attenuation measurement; partial discharge measurement; power cables; thermal noise; asymmetric pulse waveforms; cable attenuation; detection sensitivity; electrical detection; frequency-dependent attenuation; high-frequency attenuation; partial discharge pulse propagation; shielded power cable; software tools; thermal noise; Attenuation measurement; Cable shielding; Corona; Frequency; Material properties; Partial discharges; Power cables; Power measurement; Software tools; Wideband;
  • fLanguage
    English
  • Journal_Title
    Electrical Insulation Magazine, IEEE
  • Publisher
    ieee
  • ISSN
    0883-7554
  • Type

    jour

  • DOI
    10.1109/MEI.2007.4389974
  • Filename
    4389974