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Publikācija: Efficiency Improvement from Topology Modification of the Single-Switch Isolated Quasi-Z-Source DC-DC Converter

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Nosaukums oriģinālvalodā Efficiency Improvement from Topology Modification of the Single-Switch Isolated Quasi-Z-Source DC-DC Converter
Pētniecības nozare 2. Inženierzinātnes un tehnoloģijas
Pētniecības apakšnozare 2.2. Elektrotehnika, elektronika, informācijas un komunikāciju tehnoloģijas
Autori Elizaveta Liivik
Andrii Chub
Dmitri Vinnikov
Atslēgas vārdi efficiency optimization; isolated DC-DC converter; quasi-Z-source converter; single-switch converter
Anotācija Single-switch converters can be an attractive solution for low-cost and low-power applications. This paper studies efficiency improvements from topology modifications of the single-switch galvanically isolated quasi-Z-source DC-DC converter. The following approaches were studied: synchronous rectification in the quasi-Z-source network, implementation of a voltage multiplier rectifier and the multidevice switching stage, and elimination of the DC blocking capacitor from the primary winding of the isolation transformer. To evaluate the performance improvement, the efficiency was measured for all approaches in a wide input voltage and power range. It was shown that thanks to the proposed modifications, the peak efficiency of the single-switch galvanically isolated quasi-Z-source DC-DC converter was increased to 95.5%, which includes the auxiliary power and control system losses.
DOI: 10.1109/RTUCON.2016.7763118
Hipersaite: http://ieeexplore.ieee.org/document/7763118/ 
Atsauce Liivik, E., Chub, A., Vinnikov, D. Efficiency Improvement from Topology Modification of the Single-Switch Isolated Quasi-Z-Source DC-DC Converter. No: 2016 57th International Scientific Conference on Power and Electrical Engineering of Riga Technical University (RTUCON 2016): Proceedings, Latvija, Riga, 13.-14. oktobris, 2016. Piscataway: IEEE, 2016, 257.-264.lpp. ISBN 978-1-5090-3732-2. e-ISBN 978-1-5090-3731-5. Pieejams: doi:10.1109/RTUCON.2016.7763118
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ID 24092