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DC arc fault scenarios and detection methods in battery storage systems

 
: Eger, F.; Bopp, G.; Freiberger, D.; Lang, N.; Laukamp, H.; Rouffaud, G.

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Institute of Electrical and Electronics Engineers -IEEE-; Institute of Electrical and Electronics Engineers -IEEE-, Power & Energy Society -PES-:
IEEE Second International Conference on Direct Current Microgrids 2017 : June 27-29, 2017, NH Collection, Nürnberg City, Nürnberg, Germany
Piscataway, NJ: IEEE, 2017
ISBN: 978-1-5090-4479-5
ISBN: 978-1-5090-4478-8
ISBN: 978-1-5090-4480-1
pp.8-11
International Conference on Direct Current Microgrids (ICDCM) <2, 2017, Nürnberg>
English
Conference Paper
Fraunhofer ISE ()
Elektrisches Energiesystem; Energiesystemtechnik; Leistungselektronik; Batteriesysteme für stationäre und mobile Anwendungen; Fault detection; arc fault simulation; fire safety; Battery Storage System; lithium-ion battery

Abstract
DC circuits such as battery storage systems bear an inherent risk of fire through electric arc faults. This paper reveals how different system parameters are linked to the arc fault risk and which of them are useful for detection. Furthermore, a hardware-based arc fault simulator for various DC systems is introduced.

: http://publica.fraunhofer.de/documents/N-477528.html