• DocumentCode
    11347
  • Title

    Temperature dependent signal propagation velocity: possible indicator for mv cable dynamic rating

  • Author

    Yan Li ; Wouters, Peter A. A. F. ; Wagenaars, Paul ; van der Wielen, Peter C. J. M. ; Steennis, E. Fred

  • Author_Institution
    Dept. of Electr. Eng., Eindhoven Univ. of Technol., Eindhoven, Netherlands
  • Volume
    22
  • Issue
    2
  • fYear
    2015
  • fDate
    Apr-15
  • Firstpage
    665
  • Lastpage
    672
  • Abstract
    Insulation temperature is the critical parameter for dynamic rating of underground power cables. Power cables on medium voltage (MV) level are too numerous and widespread to economically justify solutions like optical fibers as temperature sensors, often employed for high voltage power cables. This paper proposes to utilize the propagation velocity of high frequency signals as indicator for MV cable dynamic rating. Laboratory scale tests are performed for both PILC and XLPE cables. Test results show that the high frequency signal propagation velocity for XLPE insulation increases with the temperature rise while PILC cable shows opposite behavior. The variation of propagation velocity with temperature is consistent with the variation of permittivity measured on test samples of both materials. The variation of propagation velocity of XLPE is confirmed by data of a power cable in service subjected to strong load cycling monitored over a week. Field data on propagation velocity also matches load variation observed for a PILC cable for load cycling recorded over one week. From laboratory tests and field measurements, it seems feasible to extract thermal information from MV cables for dynamic rating by means of high frequency propagation velocity.
  • Keywords
    XLPE insulation; permittivity; power cable insulation; power cable testing; underground cables; MV cable dynamic rating; PILC cable; XLPE insulation; cross-linked polyethylene; high frequency signal; insulation temperature; laboratory scale test; load cycling; load cycling monitoring; load variation; medium voltage level; optical fiber; paper-insulated lead cable; permittivity; temperature dependent signal propagation velocity; temperature sensor; thermal information; underground power cable; Cable insulation; Cable shielding; Optical fiber cables; Power cables; Reflection; Temperature measurement; Load management; power cable insulation; temperature measurement; thermal analysis; velocity measurement;
  • fLanguage
    English
  • Journal_Title
    Dielectrics and Electrical Insulation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1070-9878
  • Type

    jour

  • DOI
    10.1109/TDEI.2015.7076761
  • Filename
    7076761