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Exploitation of MOSFET-based AC switches in capacitive impedance matching networks in inductive wireless power transfer systems

机译:基于MOSFET的AC开关在电感无线电力传输系统中的电容阻抗匹配网络中的开发

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摘要

This study investigates the exploitation of MOSFET-based AC switches in capacitive impedance matching networks (IMNs) for inductive wireless power transfer (WPT). The IMN optimum capacitance has been chosen for a 200 kHz resonant frequency. The activation of the tuning capacitor on the tuning branch is achieved with the use of MOSFET AC switches in order for the WPT system to achieve maximum power transfer efficiency. The MOSFET AC switch is modelled as an internal parasitic resistor and capacitor connected in parallel. A WPT analytical model is developed to study the effects of the MOSFET's parasitic elements on the WPT system's efficiency and is verified experimentally. Various MOSFET switches and relays have been implemented as the IMN switching elements and compared when tested under the same conditions. It is concluded that MOSFET AC switches which have low on-resistances and small parasitic capacitances are desirable as they have a smaller impact on efficiency. Additionally, parasitic capacitances of MOSFET AC switches need careful consideration for different resonant frequencies as they can affect the overall IMN tuning capacitance especially when they are turned off. Comparing to commonly used relay switches, MOSFET-based AC switches have similar switching performance but are significantly smaller in size.
机译:本研究研究了电容阻抗匹配网络(IMN)的基于MOSFET的交流开关的开发,用于电感无线电力传输(WPT)。已选择IMN最佳电容为200kHz谐振频率。通过使用MOSFET AC开关来实现调谐电容上的调谐电容,以实现WPT系统实现最大功率传输效率。 MOSFET AC开关以并联连接的内部寄生电阻和电容器建模。开发了WPT分析模型,以研究MOSFET寄生元对WPT系统效率的影响,并通过实验验证。各种MOSFET开关和继电器已实现为IMN开关元件,并在相同条件下进行测试时进行比较。得出结论,具有低电阻和小寄生电容的MOSFET交流开关,因为它们对效率的影响较小。另外,MOSFET交流开关的寄生电容需要仔细考虑不同的谐振频率,因为它们可以影响整体IMN调谐电容,特别是当它们关闭时。比较常用的继电器开关,基于MOSFET的交流开关具有类似的开关性能,但大小明显较小。

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