Synchronous Boost Converter with High Efficiency at Light Load using QSW-ZVS and SiC MOSFETs

A converter intended to be used for the interconnection of battery-based energy storage systems with the cells of a multilevel converter is addressed in this paper. High efficiency at light and medium loads is important in these applications and it can be achieved using soft switching techniques. Tw...

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Detalles Bibliográficos
Autores: Rodríguez Alonso, Alberto|||0000-0002-6541-4509, Vázquez Ardura, Aitor|||0000-0003-3343-4772, Rodríguez Rogina, María|||0000-0002-3692-9781, Briz del Blanco, Fernando|||0000-0002-6658-8746
Tipo de recurso: artículo
Fecha de publicación:2017
País:España
Institución:Universidad de Oviedo (UNIOVI)
Repositorio:RUO. Repositorio Institucional de la Universidad de Oviedo
Idioma:inglés
OAI Identifier:oai:digibuo.uniovi.es:10651/48610
Acceso en línea:http://hdl.handle.net/10651/48610
https://dx.doi.org/10.1109/TIE.2017.2716864
Access Level:acceso abierto
Palabra clave:DC/DC bidirectional converters
Quasi-square wave-zero voltage switching (QSW-ZVS)
Light load operation
Triangular current mode (TCM)
Descripción
Sumario:A converter intended to be used for the interconnection of battery-based energy storage systems with the cells of a multilevel converter is addressed in this paper. High efficiency at light and medium loads is important in these applications and it can be achieved using soft switching techniques. Two control techniques with fixed and variable switching frequency are proposed and compared. The use of silicon carbide (SiC) mosfets provides a higher attainable switching frequency, which is especially interesting in variable frequency control techniques, allowing the operation at high voltages and high switching frequencies, with high efficiencies over a wide power range. A synchronous boost DC/DC converter rated for 400 to 800 V and 10 kW is designed and developed with SiC mosfets obtaining efficiencies higher than 97% from 100% to 3.5% of full load using a variable switching frequency (up to 200 kHz) control. Significant efficiency improvement is achieved at medium and light loads