Pulse Width Modulation-Controlled Switching Impedance for Wireless Power Transfer

Bole Ma,Lin Chai,Jianghua Lu, Shixiong Sun,William Holderbaum

ENERGIES(2023)

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摘要
The exceptional performance of the wireless power transfer (WPT) system hinges on its resonant state. However, the capacitance drift caused by manufacturing tolerance and temperature will result in a state of detuning. In this manuscript, a PWM-controlled switched impedance (PCSI) topology that can express inductive and capacitive is proposed to eliminate line mismatches resulting from the above factors. Firstly, the PCSI topology is introduced, and its placement is determined based on the characteristics of the inductor-capacitor-capacitor series (LCC-S) network. Secondly, the working principle of the proposed topology is introduced. Finally, the simulation and experimental results show that the system could be restored to its resonant state by adjusting the PCSI topology. Under different values of resonant capacitors, the PCSI topology enhances the output power of the system by 40 W similar to 150 W compared to the previous state, and the efficiency is increased by 9 similar to 13%.
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关键词
wireless power transfer,PWM-controlled switched impedance (PCSI),line tuning,capacitor drift
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