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Silicon Application Extension Versus WBG Due to Partial Power Processing [Final paper].pdf (433.4Kb)
Silicon Application Extension Versus WBG Due to Partial Power Processing.pdf (844.1Kb)
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Izenburua
Silicon Application Extension Versus WBG Due to Partial Power Processing
Egilea
Anzola, Jon
Aizpuru, Iosu cc
Egilea (beste erakunde batekoa)
Sharma, Shrivatsal
Bhattacharya, Subhashish
Argitalpen data
2022
Ikerketa taldea
Almacenamiento de energía
Beste erakundeak
North Carolina State University
Bertsioa
Postprinta
Dokumentu-mota
Kongresu-ekarpenaKongresu-ekarpena
Hizkuntza
Ingelesa
Eskubideak
© 2022 IEEE
Sarbidea
Sarbide irekia
Bahituraren amaiera data
2024-05-31
URI
https://hdl.handle.net/20.500.11984/5836
Argitaratzailearen bertsioa
https://doi.org/10.1109/APEC43599.2022.9773605
Non argitaratua
2022 IEEE Applied Power Electronics Conference and Exposition (APEC) 
Argitaratzailea
IEEE
Gako-hitzak
Resistance
Energy loss
Costs
Silicon carbide ... [+]
Resistance
Energy loss
Costs
Silicon carbide
Switching loss
Voltage
Switches [-]
Laburpena
This paper discusses the new possibilities that partial power processing offers to implement silicon semiconductors compared to wide-bandgap technologies. With this purpose, an on-board charger applic ... [+]
This paper discusses the new possibilities that partial power processing offers to implement silicon semiconductors compared to wide-bandgap technologies. With this purpose, an on-board charger application is presented as a case study in which wide-bandgap semiconductors based full power converters are compared with silicon semiconductors based partial power converters. The comparison is made using the total energy loss over a complete charge cycle. The total energy loss is calculated using the switching loss and conduction loss of the devices. The zero-voltage switching regions for both full power and partial power topologies are also considered while calculating switching losses. Using circuit simulations, it is concluded that the partial power processing converters with silicon based devices have better efficiency and reduced cost than full power converters with wide-bandgap based devices. [-]
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