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Bandwidth Enhancement for Wireless Power Transfer System Employing Non-Linear Resonator

机译:非线性谐振器的无线电力传输系统的带宽增强

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摘要

In order to enhance the tolerance of frequency misalignment and solve the amplitude-bandwidth limitation issue of the traditional linear resonance wireless power transfer (WPT) system, this paper proposes a non-linear resonance WPT (NLR-WPT) system which is mainly composed of high frequency power supply, primary linear resonator, secondary non-linear resonator, and load. Such non-linear resonator can be implemented with passive linear capacitor and magnetic saturation inductor, and it can be described by Duffing equation. It has been shown that the bandwidth of NLR-WPT system in the nonlinear state is 1.7 times larger than that in the linear state. In addition, the output voltage basically stabilizes at the same level, the voltage fluctuation is less than 5% over the power frequency ranging from 25.6 kHz to 31.8 kHz, and high overall efficiency of 86.5% can be achieved under a wide range of frequency (27.5 kHz-30.1 kHz). Furthermore, the range of frequency can be extended significantly over which the output voltage is maintained even while the compensate capacitance, load, or coupling coefficient values vary in a certain range. The experimental results agree well with the theoretical analysis and verify the validity of the NLR-WPT system with non-linear resonator. This paper provides a simple and effective scheme to suppress the fluctuation of output voltage, which is suitable for the applications of constant voltage charging such as moving devices or electric vehicles.
机译:为了提高频率未对准的容差并解决传统线性谐振无线电力传输(WPT)系统的幅度带宽问题,本文提出了主要组成的非线性共振WPT(NLR-WPT)系统高频电源,主线性谐振器,二级非线性谐振器和负载。这种非线性谐振器可以用无源线性电容器和磁饱和电感器实现,并且可以通过Duffing方程来描述。已经表明,非线性状态下的NLR-WPT系统的带宽比线性状态大1.7倍。此外,输出电压基本上在相同的水平下稳定,电压波动在功率频率范围内小于25.6kHz至31.8 kHz的功率频率,并且在广泛的频率范围内可以实现86.5%的高总效率( 27.5 kHz-30.1 kHz)。此外,频率范围可以显着延伸,在该频率范围内,即使在特定范围内也变化的补偿电容,负载或耦合系数值也会保持输出电压。实验结果与理论分析一致,并验证了NLR-WPT系统的有效性与非线性谐振器。本文提供了一种简单有效的方案来抑制输出电压的波动,这适用于恒压充电诸如移动装置或电动车辆的恒定电压充电的应用。

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