Power electronics for a sulfur plasma lamp working by acoustic resonance : full scale prototype experimental results
2014
Résumé
In this paper, the power electronics for a sulfur plasma lamp is presented. The plasma is obtained by heating the sulfur using microwaves generated by a magnetron. A custom high voltage (5 kV) power supply has been developed to supply the magnetron. To protect the bulb from melting, a suitable modulation technique has been implemented.
Détails
Titre
Power electronics for a sulfur plasma lamp working by acoustic resonance : full scale prototype experimental results
Auteur(s)/ trice(s)
Gavin, Serge (School of Engineering and Management Vaud, HES-SO, University of Applied Sciences and Arts Western Switzerland)
Carpita, Mauro (School of Engineering and Management Vaud, HES-SO, University of Applied Sciences and Arts Western Switzerland)
Courret, Gilles (School of Engineering and Management Vaud, HES-SO, University of Applied Sciences and Arts Western Switzerland)
Carpita, Mauro (School of Engineering and Management Vaud, HES-SO, University of Applied Sciences and Arts Western Switzerland)
Courret, Gilles (School of Engineering and Management Vaud, HES-SO, University of Applied Sciences and Arts Western Switzerland)
Date
2014-08
Publié dans
Proceedings of 2014 16th European Conference on Power Electronics and Applications, 26-28 August 2014, Lappeenranta, Finland
Editeur
Lappeenranta, Finland, 26-28 August 2014
Pagination
7 p.
Présenté à
European Conference on Power Electronics and Applications, Lapeenranta, Finland, 2014-08-26, 2014-08-28
ISBN
978-1-4799-3015-9
Mots-clés (libres)
magnetic resonance ; magnetocoustic effects ; modulation ; plasmas ; magnetic flux ; power supplies ; electromagnetic heating ; high voltage power converters ; IGBT ; lighting ; multilevel converters ; physics research
Type de papier
full paper
Domaine
Ingénierie et Architecture
Ecole
HEIG-VD
Institut
iE - Institut des Energies
Note
Cette publication a été rédigée par un membre de l’ancien institut IESE - Institut d'Energie et Systèmes Electriques.
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