Tomokazu Mishima
Orcid: 0000-0002-5170-277X
According to our database1,
Tomokazu Mishima
authored at least 10 papers
between 2009 and 2023.
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Bibliography
2023
A Three-Phase WPT System with Improved Misalignment Tolerance by Using an Effective Reactive Power Compensation Technique.
Proceedings of the IEEE Industry Applications Society Annual Meeting, 2023
2020
Coupled Inductor-assisted Current-Fed Snubber-less Zero-Current-Soft Switching High Step-Up DC-DC Converter for Fuel Cell Power Interface.
Proceedings of the 9th IEEE Global Conference on Consumer Electronics, 2020
2017
ZVS Phase-Shift PWM-Controlled Single-Stage Boost Full-Bridge AC-AC Converter for High-Frequency Induction Heating Applications.
IEEE Trans. Ind. Electron., 2017
High-Frequency Bridgeless Rectifier Based ZVS Multiresonant Converter for Inductive Power Transfer Featuring High-Voltage GaN-HFET.
IEEE Trans. Ind. Electron., 2017
2015
All-SiC power module-applied single-stage ZVS-PWM AC-AC converter for high-frequency induction heating.
Proceedings of the IECON 2015, 2015
2014
A New Current Phasor-Controlled ZVS Twin Half-Bridge High-Frequency Resonant Inverter for Induction Heating.
IEEE Trans. Ind. Electron., 2014
2013
A Practical ZCS-PWM Boost DC-DC Converter With Clamping Diode-Assisted Active Edge-Resonant Cell and Its Extended Topologies.
IEEE Trans. Ind. Electron., 2013
2012
A new ZVS phase-shifted high-frequency resonant inverter incorporating asymmetrical PWM-based unit control for induction heating.
Proceedings of the 38th Annual Conference on IEEE Industrial Electronics Society, 2012
Analysis, design and evaluations of a soft switching PWM DC-DC converter with phase shift-controlled ZCS active hybrid rectifier.
Proceedings of the 38th Annual Conference on IEEE Industrial Electronics Society, 2012
2009
A Novel High-Frequency Transformer-Linked Soft-Switching Half-Bridge DC-DC Converter With Constant-Frequency Asymmetrical PWM Scheme.
IEEE Trans. Ind. Electron., 2009