Fig. 1. Coaxial contactless transformer ideal concept design
Fig. 2. The structure of DCML with IPT schematic
Fig. 3. (a) Simplified system circuit (b) Linear sinusoidcircuit
Fig. 4. Voltage gain vs nomalized frequency
Fig. 5. Operation boundary design
Fig. 6. The five-level diode clamped mutilevel converterscheme
Fig. 7. Upper portion switching toplogy
Fig. 8. Switching angles vs modulation index
Fig. 9. Operation mode of DCML and resonant circuit
Fig. 10. Operation mode 1(Negative current)
Fig. 11. Operation mode 1(Positive current)
Fig. 12. Operation mode 2
Fig. 13. Operation mode 3
Fig. 14. Operation mode 4
Fig. 15. Operation mode 5 (Positive current)
Fig. 16. Operation mode 5 (Negative current)
Fig. 17. Operation mode 6
Fig. 18. Operation mode 7
Fig. 19. Operation mode 8
Fig. 20. The SHE %THD vs modulation index
Fig. 21. 3rd harmonic elimination vs modulation index
Fig. 22. 5th harmonic elimination vs modulation index
Fig. 23. VDS1 vs S1 current
Fig. 24. VDS2 vs S2 current
Fig. 25. VDS3 vs S3 current
Fig. 26. VDS4 vs S4 current
Fig. 27.Switching gain boundary
Fig. 28. VDS1 and current at 100 W and 300W
Fig. 29. The DCML output voltage and voltage harmonicspectrum (CH I 200 V/DIV, FFT 50.0V/DIV, 312.5kHz/DIV, Sa 12.5 NSa)
Fig. 30. VDS1 and current of S1 (ID1 2A/DIV, VDS1 50V/DIV)
Fig. 31. VDS2 and current of S2 (ID2 2A/DIV, VDS2 50V/DIV)
Fig. 32. VDS3 and current of S3 (ID3 2A/DIV, VDS3 50V/DIV)
Fig. 33. VDS4 and current of S4 (ID4 2A/DIV, VDS4 50V/DIV)
Fig. 34. Prototype experimental setup
Fig. 35. Switching losses in DCML swtiching devices
Fig. 36. The DCML ZVS under load variation (Ir 10A/DIV,Vprimary 100V/DIV, T 2 μS/DIV)
Table 1. LLC Series resonant system gain design
Table 2. Diode clamped multi-level switching state
Table 3. Specification of the prototype converter
Table 4. Diode clamped multi-level converter components
Table 5. Contactless transformer specification
References
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