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Wireless Power Transfer Across a Metal Barrier by Combined Capacitive and Inductive Coupling.

, , , , and . IEEE Trans. Ind. Electron., 66 (5): 4031-4041 (2019)

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Power Flow Control Based Solely on Slow Feedback Loop for Heart Pump Applications., , and . IEEE Trans. Biomed. Circuits Syst., 6 (3): 279-286 (2012)A second-order sliding-mode controller for inductively coupled power transfer systems., , , and . IECON, page 6497-6503. IEEE, (2017)Wireless Power Transfer Across a Metal Barrier by Combined Capacitive and Inductive Coupling., , , , and . IEEE Trans. Ind. Electron., 66 (5): 4031-4041 (2019)A Wireless Power Pickup Based on Directional Tuning Control of Magnetic Amplifier., , and . IEEE Trans. Ind. Electron., 56 (7): 2771-2781 (2009)Multiphase Inductive Power Transfer Box Based on a Rotating Magnetic Field., , and . IEEE Trans. Ind. Electron., 62 (2): 795-802 (2015)Analysis of peak currents in integrated synchronous rectifiers., , , , and . NEWCAS, page 1-4. IEEE, (2015)Minimizing Power Loss in Air-Cored Coils for TET Heart Pump Systems., , and . IEEE J. Emerg. Sel. Topics Circuits Syst., 1 (3): 412-419 (2011)Design methodology for inductive power transfer systems targeting high power implantable devices., , , and . ISCAS, page 2787-2791. IEEE, (2013)Magnetic Coupling Analysis of a TET Power Delivery System., , and . BIODEVICES (2), page 170-175. INSTICC - Institute for Systems and Technologies of Information, Control and Communication, (2008)978-989-8111-17-3.Efficient Power-Transfer Capability Analysis of the TET System Using the Equivalent Small Parameter Method., , , , and . IEEE Trans. Biomed. Circuits Syst., 5 (3): 272-282 (2011)