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Wireless Power Transfer Receiver With Adjustable Coil Output Voltage for Multiple Receivers Application.

, , , , and . IEEE Trans. Industrial Electronics, 66 (5): 4003-4012 (2019)

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A Study on Magnetic Field Repeater in Wireless Power Transfer., and . IEEE Trans. Industrial Electronics, 60 (1): 360-371 (2013)Wireless Power Transfer Receiver With Adjustable Coil Output Voltage for Multiple Receivers Application., , , , and . IEEE Trans. Industrial Electronics, 66 (5): 4003-4012 (2019)Wireless Power Transfer Resonance Coupling Amplification by Load-Modulation Switching Controller., and . IEEE Trans. Industrial Electronics, 62 (2): 898-909 (2015)Self-Tuning LCC Inverter Using PWM-Controlled Switched Capacitor for Inductive Wireless Power Transfer., and . IEEE Trans. Industrial Electronics, 66 (5): 3983-3992 (2019)Optimal Design of Wireless Power Transmission Links for Millimeter-Sized Biomedical Implants., and . IEEE Trans. Biomed. Circuits and Systems, 10 (1): 125-137 (2016)A Transmitter or a Receiver Consisting of Two Strongly Coupled Resonators for Enhanced Resonant Coupling in Wireless Power Transfer., and . IEEE Trans. Industrial Electronics, 61 (3): 1193-1203 (2014)Towards a three-phase time-multiplexed planar power transmission to distributed implants., , and . ISCAS, page 1770-1773. IEEE, (2015)Wireless Power Transmission With Self-Regulated Output Voltage for Biomedical Implant., and . IEEE Trans. Industrial Electronics, 61 (5): 2225-2235 (2014)Effect of Coupling Between Multiple Transmitters or Multiple Receivers on Wireless Power Transfer., and . IEEE Trans. Industrial Electronics, 60 (7): 2602-2613 (2013)