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A Wireless Power Transfer System With Dual Switch-Controlled Capacitors for Efficiency Optimization

机译:具有双开关控制电容的无线电力传输系统,用于效率优化

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摘要

This article proposes a novel wireless power transfer (WPT) system with switch-controlled capacitor (SCC) where variable capacitance and efficiency optimization are realized. The optimum asymmetrical voltage cancellation (OAVC) control is applied to realize wide-ranging soft-switching operation for the active bridge converters. The pulsewidth of the active bridge inverter regulates the output voltage, and the pulsewidth of the active bridge rectifier optimizes power delivery efficiency. The SCCs in the transmitter and the receiver sides are regulated for the zero-voltage switching operation and the resonant condition, respectively. The online estimation of mutual inductance is carried out to adapt the coupling deviations of the WPT system in real time. A 650-W prototype is built to verify the feasibility of the proposed WPT system and the effectiveness of the OAVC control. The experimental results show quite good performance and efficiency improvement for the WPT system at various loads.
机译:本文提出了一种具有开关控制电容器(SCC)的新型无线电力传输(WPT)系统,其中实现了可变电容和效率优化。应用最佳的不对称电压消除(OAVC)控制来实现有源桥式转换器的宽范围的软切换操作。有源桥式逆变器的脉冲宽度调节输出电压,有源桥式整流器的脉冲宽度优化电力输送效率。发送器中的SCC和接收器侧分别用于零电压切换操作和谐振条件。对互感的在线估计是为了适应WPT系统实时耦合偏差。建立了650-W的原型,以验证所提出的WPT系统的可行性以及OAVC控制的有效性。实验结果表明了WPT系统在各种负荷下的性能和效率提高。

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