Enhanced boost converter with gan based power switches and switched-capacitor
Abstract
Keywords
References
- Tofoli, F. L., Pereira, D. C., Paula, W.J., Oliviera Junior, D.S., Survey on non-isolated high-voltage step-up dc-dc topologies based on the boost converter. IET Power Electronics, 8(10) (2015), 2044–2057.
- Li, W., He, X., Review of nonisolated high-step-up dc/dc converters in photovoltaic grid-connected applications, IEEE Trans. On Industrial Electronics, 58(4) (2011), 1239–1250.
- Chen, T. M., Chan, C.L., Analysis and design of asymmetrical half bridge flyback converter, IEE Proc.-Elect. Power Appl., 149(6) (2002), 433-440.
- Soltanzadeh, K., Khalilian, H., Dehghani, M., Analysis, design and implementation of a zero voltage switching two-switch CCM flyback converter, IET Circuits, Devices & Systems, 10(1) (2015), 20-28.
- Murthy-Bellur, D., Kondrath, N., Kazimierczuk, M.K., Transformer winding loss caused by skin and proximity effects including harmonics in pulse-width modulated dc-dc flyback converters for the continuous conduction mode, IET Power Electronics, 4(4) (2010), 363-373.
- Yan, Z., Ai-ming, S., Simplified ferrite core loss separation model for switched mode power converter, IET Power Electronics, 9(3) (2015), 529-535.
- GaN Systems. Top-side cooled 100 V E-mode GaN transistor, GS61008T datasheet, (2017).
- Zhu, B., Wang, H., Vilathgamuwa, D.M., Single-switch high step-up boost converter based on a novel voltage multiplier, IET Power Electronics, 12(14) (2019), 3732-3738.
Details
Primary Language
English
Subjects
Engineering
Journal Section
Research Article
Authors
Korhan Cengiz
*
0000-0001-6594-8861
Türkiye
Publication Date
June 30, 2021
Submission Date
June 25, 2020
Acceptance Date
October 1, 2020
Published in Issue
Year 2021 Volume: 63 Number: 1
