DocumentCode
1490548
Title
Novel medium voltage fault current limiter based on polymer PTC resistors
Author
Strümpler, R. ; Skindhøj, J. ; Glatz-Reichenbach, J. ; Kuhlefelt, J.H.W. ; Perdoncin, F.
Author_Institution
ABB Corp. Res. Ltd., Baden-Dattwil, Switzerland
Volume
14
Issue
2
fYear
1999
fDate
4/1/1999 12:00:00 AM
Firstpage
425
Lastpage
430
Abstract
For limitation and interruption of short circuit currents in medium voltage (MV) applications, fuses and circuit breakers are widely used today. Fuses exhibit excellent current limitation, but work only for a single shot. Circuit breakers are multi-operation devices, but allow several periods of the short circuit current to pass. Based on new PTC materials (positive temperature coefficient of resistance), we propose a new current limiting device for MV applications, which offers the chance to combine the advantages of fuses with the advantages of circuit breakers: a fast current limitation with a repetitive operation. The active material consists of conducting particles in a polymeric matrix. Its challenging property is a change on resistivity by eight to ten orders of magnitude upon temperature increase. This allows the limitation of available short circuit currents in a stable insulating state for a long period of time. The device consists of a series connection of PTC resistors with varistor elements connected in parallel, which serve for a perfect voltage distribution. Using this principle, repetitive current limitation of prospective currents of 4 to 14 kA within about 1 ms could be demonstrated at circuit voltages up to 12 kV
Keywords
conducting polymers; electrical resistivity; fault current limiters; power distribution protection; short-circuit currents; varistors; 1 ms; 12 kV; 4 to 14 kA; circuit breakers; conducting particles; current limiting device; fuses; medium voltage; medium voltage fault current limiter; parallel connected varistor elements; perfect voltage distribution; polymer PTC resistors; polymeric matrix; positive temperature coefficient of resistance; repetitive operation; resistivity change; short circuit currents interruption; short circuit currents limitation; temperature increase; Circuit breakers; Conducting materials; Conductivity; Current limiters; Fault current limiters; Fuses; Medium voltage; Polymers; Short circuit currents; Temperature;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/61.754084
Filename
754084
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