• DocumentCode
    1482128
  • Title

    Technical and economical assessment of HTS cables

  • Author

    Politano, Diego ; Sjöström, Mårten ; Schnyder, Gilbert ; Rhyner, Jakob

  • Author_Institution
    High Voltage Lab., Eidgenossische Tech. Hochschule, Zurich, Switzerland
  • Volume
    11
  • Issue
    1
  • fYear
    2001
  • fDate
    3/1/2001 12:00:00 AM
  • Firstpage
    2477
  • Lastpage
    2480
  • Abstract
    Besides the option of HTS cables as retrofit elements in densely populated areas, the technically most attractive aspect of HTS is the possibility of high power transmission at reduced voltage. In this paper, the authors concentrate on this second aspect. High power/low voltage HTS lines are analysed from the technical and economical point of view in two case studies: (i) a 110 kV/1 GVA transalpine line replacing a 380 kV overhead line; and (ii) a 30 km/600 MVA line connecting a nuclear power plant with a densely populated area. The technical analysis shows that high power cables at reduced voltages (>20 kV) and with acceptable electrical properties (losses, dimensions, reactive power) are technically feasible. In the economical analysis, the life cycle costs of the different scenarios are calculated including the investment and operation costs of the cable, the undergrounding costs and the costs of secondary equipment (fault current limiter, converter, cooling). The analysis shows that the DC HTS line can be interesting, whereas the AC HTS cable systems can hardly compete economically with conventional AC cable installations
  • Keywords
    high-temperature superconductors; investment; power system economics; superconducting cables; 1 GVA; 110 kV; 30 km; 600 MVA; AC HTSC cables; case studies; cooling; economical assessment; fault current limiter; high power cables; high-Tc superconductors; investment costs; life cycle costs; nuclear power plant; operation costs; power converter; power transmission; technical assessment; Costs; High temperature superconductors; Joining processes; Low voltage; Power generation; Power generation economics; Power system economics; Power transmission; Reactive power; Underground power cables;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/77.920366
  • Filename
    920366