Details
Originalsprache | Deutsch |
---|---|
Seitenumfang | 4 |
Publikationsstatus | Veröffentlicht - 2017 |
Veranstaltung | IEEE Power and Energy Student Summit - Nürnberg, Deutschland Dauer: 26 Juli 2017 → 28 Juli 2017 |
Konferenz
Konferenz | IEEE Power and Energy Student Summit |
---|---|
Land/Gebiet | Deutschland |
Ort | Nürnberg |
Zeitraum | 26 Juli 2017 → 28 Juli 2017 |
Abstract
(HTS) cable characteristics and their impact in the
German high voltage transmission grid. The characteristics are
the result of computed cable construction properties. They are
calculated for every possible design of each HTS layer and their
combination, if multiple layers are necessary. The final cable
model is chosen by its alternating current loss or respectively its
current distribution.
The influence of HTS cables in the German high voltage
transmission grid is shown in eight different cases. This case
study replaces planned cable sections of one transmission line
stepwise with HTS cables.
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2017. Beitrag in IEEE Power and Energy Student Summit, Nürnberg, Bayern, Deutschland.
Publikation: Konferenzbeitrag › Paper › Forschung
}
TY - CONF
T1 - High Temperature Superconductor Cables in the German High Voltage Grid
AU - Kluß, Leonard
AU - Schlömer, Gerrit
AU - Hofmann, Lutz
N1 - IEEE Power and Energy Student Summit
PY - 2017
Y1 - 2017
N2 - This paper describes high temperature superconducting(HTS) cable characteristics and their impact in theGerman high voltage transmission grid. The characteristics arethe result of computed cable construction properties. They arecalculated for every possible design of each HTS layer and theircombination, if multiple layers are necessary. The final cablemodel is chosen by its alternating current loss or respectively itscurrent distribution.The influence of HTS cables in the German high voltagetransmission grid is shown in eight different cases. This casestudy replaces planned cable sections of one transmission linestepwise with HTS cables.
AB - This paper describes high temperature superconducting(HTS) cable characteristics and their impact in theGerman high voltage transmission grid. The characteristics arethe result of computed cable construction properties. They arecalculated for every possible design of each HTS layer and theircombination, if multiple layers are necessary. The final cablemodel is chosen by its alternating current loss or respectively itscurrent distribution.The influence of HTS cables in the German high voltagetransmission grid is shown in eight different cases. This casestudy replaces planned cable sections of one transmission linestepwise with HTS cables.
M3 - Paper
T2 - IEEE Power and Energy Student Summit
Y2 - 26 July 2017 through 28 July 2017
ER -