In this paper the feasibility of achieving a coupling-independent performance for a Wireless Power Transfer Link based on resonant inductive coupling is investigated. Theoretical and experimental results demonstrating that a coupling-independent regime can be realized by an appropriate selection of the operating frequency of a strongly-coupled synchronous WPT link are reported and discussed.

De Angelis, A., Dionigi, M., Carbone, P., Mongiardo, M., Wang, Q., Che, W., et al. (2017). Resonant inductive WPT link operating in a coupling-independent regime. Institute of Electrical and Electronics Engineers Inc. [10.23919/ROPACES.2017.7916347].

Resonant inductive WPT link operating in a coupling-independent regime

MASTRI, FRANCO;COSTANZO, ALESSANDRA;
2017

Abstract

In this paper the feasibility of achieving a coupling-independent performance for a Wireless Power Transfer Link based on resonant inductive coupling is investigated. Theoretical and experimental results demonstrating that a coupling-independent regime can be realized by an appropriate selection of the operating frequency of a strongly-coupled synchronous WPT link are reported and discussed.
2017
2017 International Applied Computational Electromagnetics Society Symposium - Italy, ACES 2017
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De Angelis, A., Dionigi, M., Carbone, P., Mongiardo, M., Wang, Q., Che, W., et al. (2017). Resonant inductive WPT link operating in a coupling-independent regime. Institute of Electrical and Electronics Engineers Inc. [10.23919/ROPACES.2017.7916347].
De Angelis, Alessio; Dionigi, Marco; Carbone, Paolo; Mongiardo, Mauro; Wang, Qinghua; Che, Wenquan; Mastri, Franco; Costanzo, Alessandra; Monti, Giuse...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/607863
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