It is well known that fixed-frequency constant-coupling series(capacitor)-series(capacitor) (S(C)-S(C)) compensated inductive wireless power transfer links (IWPTL) may be designed to operate with load-independent voltage gain (LIVG) within bounds dictated by parameters of the loosely coupled transformer (LCT). Lately, it has been shown that these bounds may be extended by employing series(inductor)-series(capacitor) (S(L)-S(C)) or series(capacitor)-series(inductor) (S(C)-S(L)) compensation networks, allowing attaining arbitrary LIVG at the expense of utilizing full-rating inductors as compensation elements. This work proposes a design method allowing to simultaneously attain arbitrary LIVG with S(C)-S(C) compensated IWPTL and minimize inverter VA rating. The revealed methodology is validated in PSIM simulation and experiments.

Vulfovich, A., Orfanoudakis, G.I., Mellincovsky, M., Banavath, S.N., Mandrioli, R., Kuperman, A. (2025). Attaining Arbitrary Load Independent Voltage Gain and Minimizing Inverter VA Rating in S(C)-S(C) Compensated Wireless Power Transfer Links. IEEE Computer Society [10.1109/IECON58223.2025.11221275].

Attaining Arbitrary Load Independent Voltage Gain and Minimizing Inverter VA Rating in S(C)-S(C) Compensated Wireless Power Transfer Links

Mandrioli R.;
2025

Abstract

It is well known that fixed-frequency constant-coupling series(capacitor)-series(capacitor) (S(C)-S(C)) compensated inductive wireless power transfer links (IWPTL) may be designed to operate with load-independent voltage gain (LIVG) within bounds dictated by parameters of the loosely coupled transformer (LCT). Lately, it has been shown that these bounds may be extended by employing series(inductor)-series(capacitor) (S(L)-S(C)) or series(capacitor)-series(inductor) (S(C)-S(L)) compensation networks, allowing attaining arbitrary LIVG at the expense of utilizing full-rating inductors as compensation elements. This work proposes a design method allowing to simultaneously attain arbitrary LIVG with S(C)-S(C) compensated IWPTL and minimize inverter VA rating. The revealed methodology is validated in PSIM simulation and experiments.
2025
IECON Proceedings (Industrial Electronics Conference)
1
6
Vulfovich, A., Orfanoudakis, G.I., Mellincovsky, M., Banavath, S.N., Mandrioli, R., Kuperman, A. (2025). Attaining Arbitrary Load Independent Voltage Gain and Minimizing Inverter VA Rating in S(C)-S(C) Compensated Wireless Power Transfer Links. IEEE Computer Society [10.1109/IECON58223.2025.11221275].
Vulfovich, A.; Orfanoudakis, G. I.; Mellincovsky, M.; Banavath, S. N.; Mandrioli, R.; Kuperman, A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1036039
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