• DocumentCode
    990105
  • Title

    Polymeric HVDC Cable Design and Space Charge Accumulation. Part 1: Insulation/Semicon Interface

  • Author

    Fabiani, D. ; Montanari, G.C. ; Laurent, C. ; Teyssedre, G. ; Morshuis, P.H.F. ; Bodega, R. ; Dissado, L.A. ; Campus, A. ; Nilsson, U.H.

  • Author_Institution
    Univ of Bologna, Bologna
  • Volume
    23
  • Issue
    6
  • fYear
    2007
  • Firstpage
    11
  • Lastpage
    19
  • Abstract
    From theory and experiments, it can be deduced that materials for DC applications should not accumulate a large amount of space charge if accelerated degradation of the insulation system is to be avoided. Therefore, the characterization of DC insulation must take into account the evaluation of space charge accumulation. This cannot be done exhaustively without taking a system approach considering both the semiconductive material and the insulation, in particular, the properties of the semicon/insulation interface. The latter interface, in fact, plays a major role in space charge injection/accumulation in the insulation bulk. Having analyzed different semiconductive and insulating materials candidate for HVDC cable applications, the best solution to be exploited for HVDC cable design would be the combination showing a high threshold for space charge accumulation, a small rate of charge accumulation as a function of electric field and a small activation energy, i.e., a space charge amount less dependent on temperature. Therefore, space charge measurements will provide important information to cable material manufacturers with the aim of tailoring insulation and semicon specifically for HVDC application and, thus, improving the reliability of polymeric cables.
  • Keywords
    HVDC power transmission; insulating materials; power cable insulation; semiconductor materials; space charge; cable material manufacturers; electric field; insulating materials; insulation system; polymeric HVDC cable design; semicon interface; semiconductive material; space charge accumulation; space charge measurements; Acceleration; Cable insulation; Current measurement; Degradation; Dielectrics and electrical insulation; HVDC transmission; Polymers; Semiconductor materials; Space charge; Temperature dependence;
  • fLanguage
    English
  • Journal_Title
    Electrical Insulation Magazine, IEEE
  • Publisher
    ieee
  • ISSN
    0883-7554
  • Type

    jour

  • DOI
    10.1109/MEI.2007.4389975
  • Filename
    4389975