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{"references": ["Andrea Celentano, Fabio Pareschi, Victor R. Gonzalez-Diaz, Riccardo Rovatti and Gianluca Setti, \"A Methodology for the Practical Design and Optimization of Class-E DC-DC Resonant Converters\", under review", "Fabio Pareschi, Nicola Bertoni, Mauro Mangia, Riccardo Rovatti, and Gianluca Setti, \"A Unified Design Theory for Class-E Resonant DC-DC Converter Topologies\", in IEEE ACCESS, vol. 7, pp. 83825 - 83838. 2019.", "Nicola Bertoni, Giovanni Frattini, Roberto Massolini, Fabio Pareschi, Riccardo Rovatti, and Gianluca Setti, \"An Analytical Approach for the Design of Class-E Resonant DC-DC Converters\", in IEEE Transactions on Power Electronics, vol. 31, no. 11, pp. 7701-7713. November 2016."]}
This Matlab software allows you to get the optimal class-E design (i.e., ZVS + ZVDS) or suboptimal (ZVS only) according to the methodology described in the paper "A Methodology for the Practical Design and Optimization of Class-E DC-DC Resonant Converters" (see reference list). It also includes a large dataset of already optimized points.
Circuit theory, Engineering, Resonant dc-dc converters, dc-dc converters, resonant power converters, class-E converters, Class-E, Capsule
Circuit theory, Engineering, Resonant dc-dc converters, dc-dc converters, resonant power converters, class-E converters, Class-E, Capsule
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