Fig. 1. CC-CV charging profile
Fig. 2. Proposed LLC resonant converter
Fig. 3. Voltage gain curve of the conventional LLC resonantconverter
Fig. 4. Voltage gain curve of the proposed LLC resonantconverter
Fig. 5. Configuration of the proposed converter accordingto operational mode
Fig. 6. The overshoot elimination algorithm: (a) theswitching frequency trajectory; (b) A flow chart
Fig. 7. Optimal magnetizing inductance (Lm) selection.
Fig. 8. Optimal number of turns of auxiliary windingselection
Fig. 9. An integrated transformer of the resonant tank: (a)winding structures and (b) a manufactured prototype
Fig. 10. Experimental setup of the prototype
Fig. 11. Experimental result of the conventional LLCresonant converter: (a) at 10% load and (b) 80%load
Fig. 12. Experimental result of the proposed LLC resonantconverter: (a) at 10% load and (b) 80% load
Fig. 13. Efficiency comparison result between the conven-tional LLC resonant converter and the proposedone: (a) CC mode and (b) CV mode
Fig. 14. Experiment waveforms during the CC-CV chargingprocess
Fig. 15. Experiment waveforms under mode conversion:(a) without the overshoot-less algorithm and (b)with the overshoot-less algorithm
Table 1. Design parameters
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