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  4. Impact of Inhomogeneities in HTS Coated Conductors for Resistive FCLs
 
conference paper

Impact of Inhomogeneities in HTS Coated Conductors for Resistive FCLs

Colangelo, Daniele  
•
Memiaghe, Steeve
•
Lacroix, Christian
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2011
Physics Procedia
EUCAS Conference 2011

Several issues remain to be addressed for the commercial development of ResistiveFault Current Limiters based on superconducting technologies (RFCL). In particular, the inhomogeneity of high temperature superconducting coated conductors (HTS-CC) combined with the diffculty to predict RFCLs behaviour when interfaced with the existing electrical grid represents an important bottleneck that limits their competitiveness on the electrical market. In order to study the influence of the local inhomogeneity of the HTS tape on the global effective performance of an RFCL, a modular equivalent circuit model has been developed using SimPowerSystemsTM. The model implements an inhomogeneity distribution based on statistical data and takes into account the thermal conduction between different zones of the HTS-CC. It has been calibrated with experimental measurements and finite element simulations. The model can be used to study various scenarios common to power systems, such as transformer in-rush currents, motor starts, etc.

  • Details
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Type
conference paper
DOI
10.1016/j.phpro.2012.08.001
Web of Science ID

WOS:000314403400218

Author(s)
Colangelo, Daniele  
Memiaghe, Steeve
Lacroix, Christian
Sirois, Frédéric
Dutoit, Bertrand  
Date Issued

2011

Publisher

Elsevier Science Bv

Publisher place

Amsterdam

Published in
Physics Procedia
Total of pages

6

Series title/Series vol.

Physics Procedia

Volume

36

Start page

1219

End page

1224

Subjects

Fault current limiters

•

High temperature superconductors

•

Inhomogeneity

•

Electrical power grids

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SUPRA  
Event name
EUCAS Conference 2011
Available on Infoscience
October 17, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/86166
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