Harischandrappa, NagendrappaBhat, Ashoka K. S.2019-03-022019-03-0220192019Harischandrappa, N. & Bhat, A.K.S. (2019). A 10 kW ZVS Integrated Boost Dual Three-Phase Bridge DC–DC Resonant Converter for a Linear Generator-Based Wave-Energy System: Design and Simulation. Electronics, 8(1), 115. https://doi.org/10.3390/electronics8010115http://dx.doi.org/10.3390/electronics8010115http://hdl.handle.net/1828/10618The design and performance analysis of a 10 kW three-phase DC–DC LCL-type resonant converter having a built-in boost function were carried out. This high-power converter is proposed for its application in grid-interfacing a linear generator (LG)-based wave-energy system. Fixed-frequency control is used, and the converter was designed to operate with a lagging power factor. It is shown that all switches turn on with zero-voltage switching (ZVS) for wide input voltage and load variations. This results in reduced switching losses and stresses, which is very important in large-power applications. The performance of the converter was studied through PSIM simulation software. Theoretical and simulation results are presented for comparison. Power-loss break-down analysis of the designed converter was carried out and the summary of results is presented.enLCL-resonant converterDC–DCintegrated boostdual three-phase bridgefixed frequencyZVSlarge powerA 10 kW ZVS Integrated Boost Dual Three-Phase Bridge DC–DC Resonant Converter for a Linear Generator-Based Wave-Energy System: Design and SimulationArticle