STATUS AND PROGRESS OF A FAULT CURRENT LIMITING HTS CABLE TO BE INSTALLED IN THE CON EDISON GRID

In the last decade, significant advances in the performance of second generation (2G) high temperature superconducting wire have made it suitable for commercially viable applications such as electric power cables and fault current limiters. Currently, the U.S. Department of Homeland Security is co-f...

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Veröffentlicht in:Transactions of the Cryogenics Engineering Conference 2009-07, Vol.1218, p.445-452
Hauptverfasser: Maguire, J, Folts, D, Yuan, J, Henderson, N, Lindsay, D, Knoll, D, Rey, C, Duckworth, R, Gouge, M, Wolff, Z, Kurtz, S
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Sprache:eng
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Zusammenfassung:In the last decade, significant advances in the performance of second generation (2G) high temperature superconducting wire have made it suitable for commercially viable applications such as electric power cables and fault current limiters. Currently, the U.S. Department of Homeland Security is co-funding the design, development and demonstration of an inherently fault current limiting HTS cable under the Hydra project with American Superconductor and Consolidated Edison. The cable will be approximately 300 m long and is being designed to carry 96 MVA at a distribution level voltage of 13.8 kV. The underground cable will be installed and energized in New York City. The project is led by American Superconductor teamed with Con Edison, Ultera (Southwire and nkt cables joint venture), and Air Liquide. This paper describes the general goals, design criteria, status and progress of the project. Fault current limiting has already been demonstrated in 3 m prototype cables, and test results on a 25 m three-phase cable will be presented. An overview of the concept of a fault current limiting cable and the system advantages of this unique type of cable will be described.
ISSN:0094-243X