Time Domain Modelling of a Wireless Power Transfer System using a Buck-Boost Converter for Voltage Regulation

Arpan Laha, P. Jain
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引用次数: 2

Abstract

This paper presents a time domain analysis of a Wireless Power Transfer (WPT) system having one transmitter and one receiver in which constant output voltage is maintained by a buck-boost converter placed after the rectifier on the receiver side. The practical modes of operation of the resonant tank are identified, and exact solutions have been derived for the circuit parameters like gain, currents, and voltages in the tank. This helps in preventing overdesign of components from approximate solutions provided by frequency domain modelling. The system is operated in the strongly coupled region below resonant frequency to achieve zero voltage switching (ZVS), by choosing the appropriate duty ratio of the buck-boost converter, which has not been done in existing literature. Experimental results on a $5\mathrm{W}, 5\mathrm{V}$ prototype are used to verify the analysis.
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利用Buck-Boost变换器进行电压调节的无线电力传输系统的时域建模
本文介绍了一个无线电力传输(WPT)系统的时域分析,该系统具有一个发射器和一个接收器,其中接收器侧的整流器后放置一个降压-升压转换器以保持恒定的输出电压。确定了谐振槽的实际工作模式,并推导出谐振槽中增益、电流、电压等电路参数的精确解。这有助于防止由频域建模提供的近似解对组件进行过度设计。通过选择合适的降压-升压变换器占空比,系统工作在谐振频率以下的强耦合区域,实现零电压开关(ZVS),这在现有文献中是没有的。在$5\mathrm{W}, $5\mathrm{V}$样机上的实验结果验证了分析的有效性。
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