Optimal control strategies for high-efficiency non-isolated DC-DC buck converters in IoT applications: A comparative study. [PDF]
Kumaraguruparan S, Elango K.
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SPICE simulation and modeling of DC-DC flyback converter
Hong Man Leung
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Operator-Based Triboelectric Nanogenerator Power Management and Output Voltage Control. [PDF]
Liu C, Shimane R, Deng M.
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An efficient high-gain bidirectional interleaved boost converter for PV integration to DC microgrid. [PDF]
Sreelatha E +8 more
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Advances in Interface Circuits for Self-Powered Piezoelectric Energy Harvesting Systems: A Comprehensive Review. [PDF]
Al Ghazi A, Ouslimani A, Kasbari AE.
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A novel design and analysis of hybrid fuzzy logic MPPT controller for solar PV system under partial shading conditions. [PDF]
Kumar SS, Balakrishna K.
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Review, Properties, and Synthesis of Single-Switch Non-Isolated DC-DC Converters with a Wide Conversion Range. [PDF]
Tofoli FL, Carlos TMJ, Morais AS.
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This paper presents a modified Flyback converter able to operate with higher efficiency and smaller size, overcoming most of the conventional flyback converter drawbacks, and also keeping its low cost and simplicity. In particular, the proposed converter allows the mosfet off voltage to be reduced and clamped to the input, thus recovering the ...
BOSCAINO, Valeria +3 more
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Design and implementation of flyback converters
2010 5th IEEE Conference on Industrial Electronics and Applications, 2010In switch mode power supplies(SMPS), flyback converters are very popular because of, design simplicity, low cost, multiple isolated outputs, high output voltages and high efficiency. They are preferred especially for low power applications (150W).
ÇORUH, NASIR +2 more
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Asymmetrical PWM flyback converter
2000 IEEE 31st Annual Power Electronics Specialists Conference. Conference Proceedings (Cat. No.00CH37018), 2002The asymmetrical PWM converter with the flyback output rectifier (asymmetrical PWM flyback converter) is proposed in this paper. The asymmetrical PWM flyback converter has the feature of zero-voltage switching (ZVS) in the active switches using resonance of the parasitic components.
D.H. Seo, O.J. Lee, S.H. Lim, J.S. Park
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