4.6 Article

Tunable Dual Band Wireless Power Transfer (TDB-WPT) System for Short Range Applications

Journal

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCSII.2022.3174524

Keywords

Resonant frequency; Spirals; Varactors; Wireless communication; RLC circuits; Dual band; Couplings; Defected ground structure (DGS); spiral; varactor; wireless power transfer (WPT)

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This brief introduces a novel design for wireless power transfer in dual bands with reconfiguration operation. It utilizes a fixed band at 190 MHz and a second band that can be tuned from 1.1 GHz to 1.4 GHz. The system consists of a spiral resonator with a varactor diode for the tuned band and a spiral resonator with a surface mounted capacitor for the fixed band. The system achieved high efficiency and showed good agreement between measurement and simulation.
This brief introduces a novel design to transfer wireless power in dual bands with reconfiguration operation. The idea is obtained by transferring power through one fixed band at 190 MHz and the second band is tuned from 1.1 GHz to 1.4 GHz. The top layer is constructed of a spiral resonator coupled with the feed line. The bottom layer contains a spiral resonator. The varactor diode is attached to the spiral at the top layer which is responsible for the tuned band. Further, a surface mounted (SMD) capacitor is added to the spiral at the bottom layer for getting a fixed band. The system has a size of 20 x 20 mm(2) and the transmission distance between the coupled resonators is 10 mm. The system achieved an efficiency of 97 % at the fixed band of 190 MHz while the average efficiency is 95 % over the tuned band. A good agreement between the measurement and the simulation is achieved.

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