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Auxiliary power supply based on a modular ISOP Flyback configuration with very high input voltage

Autor(es) y otros:
Rodríguez Alonso, AlbertoAutoridad Uniovi; Rodríguez Rogina, MaríaAutoridad Uniovi; Saeed Hazkial Gerges, MariamAutoridad Uniovi; González Lamar, DiegoAutoridad Uniovi; Arias Pérez de Azpeitia, ManuelAutoridad Uniovi; López Medina, MarioAutoridad Uniovi; Briz del Blanco, FernandoAutoridad Uniovi
Palabra(s) clave:

ISOP

APS

DC/DC converter

Fecha de publicación:
2016
Editorial:

IEEE

Versión del editor:
http://dx.doi.org/10.1109/ECCE.2016.7854894
Resumen:

This paper proposes a Flyback-based Input-Series Output-Parallel (ISOP) Auxiliary Power Supply (APS), intended to feed the control system of the cells of a Solid-State Transformer (SST). The SST topology is based on a modular Multiport Multilevel Converter (MMC). Energization of the cells auxiliary circuitry is not trivial due to the high voltages involved (tens of kV for the electric power distribution system), most of the commercially available control and driving circuitry not being usable due to the isolation requirements. It is possible to energize the control circuitry from an APS, connected to the cell capacitor voltage. However, in the SST under consideration, cells target DC voltage is in the range of 1.5kV to 2.5kV. Design of an APS capable of feeding the auxiliary circuitry from such high voltage and the required isolation is not trivial. A modular APS using autonomous Flyback converters in Continuous Conduction Mode (CCM) and based on commercial AC adapters is proposed in this paper. The solution is scalable and therefore applicable to cells with larger DC voltages

This paper proposes a Flyback-based Input-Series Output-Parallel (ISOP) Auxiliary Power Supply (APS), intended to feed the control system of the cells of a Solid-State Transformer (SST). The SST topology is based on a modular Multiport Multilevel Converter (MMC). Energization of the cells auxiliary circuitry is not trivial due to the high voltages involved (tens of kV for the electric power distribution system), most of the commercially available control and driving circuitry not being usable due to the isolation requirements. It is possible to energize the control circuitry from an APS, connected to the cell capacitor voltage. However, in the SST under consideration, cells target DC voltage is in the range of 1.5kV to 2.5kV. Design of an APS capable of feeding the auxiliary circuitry from such high voltage and the required isolation is not trivial. A modular APS using autonomous Flyback converters in Continuous Conduction Mode (CCM) and based on commercial AC adapters is proposed in this paper. The solution is scalable and therefore applicable to cells with larger DC voltages

URI:
http://hdl.handle.net/10651/41611
ISBN:
978-1-5090-0737-0
DOI:
10.1109/ECCE.2016.7854894
Patrocinado por:

Government of Spain through projects DPI2013-47176-C2-2-R, MINECO- 15-DPI2014-56358-JIN and the grant FPI BES-2014-070785, through funding from the Government of Asturias through the project FC-15-GRUPIN14-143 and FEDER funds, and thanks to the project of the European Commission “Silicon Carbide Power Electronics Technology for Energy Efficient Devices”, SPEED, FP7 Large Project (NMP3-LA-2013-604057)

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