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Compact Wireless IPT System Using a Modified Voltage-fed Multi-resonant Class EF_2 Inverter

机译:紧凑型无线IPT系统,采用改进的电压馈电多谐振类EF_2逆变器

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摘要

Wireless inductive power transfer (IPT) technology is used in many applications today. A compact and high-frequency primary side inverter is one of the most important parts of a WPT system. In this study, a modified class EF-type voltage-fed multi-resonant inverter has been proposed for WPT application at a frequency range of 85-100 kHz. Instead of an infinite input choke inductor, a resonant inductor is used to reduce loss and power density. The peak voltage stress across the MOSFET has been reduced to almost 60% from a class-E inverter using a passive clamping circuit. A simple yet effective design procedure has been presented to calculate the various component values of the proposed inverter. The overall system is simulated using MATLAB/SimPowerSystem to verify the theoretical concepts. A 500-W prototype was built and tested to validate the simulated results. The inverter exhibited 90% efficiency at nearly perfect alignment condition, and efficiency reduced gradually with the misalignment of WPT coils. The proposed inverter maintains zero-voltage switching (ZVS) during considerable load changes and possesses all the inherent advantages of class E-type inverters.
机译:如今,无线感应功率传输(IPT)技术被用于许多应用中。紧凑的高频初级侧逆变器是WPT系统最重要的部分之一。在这项研究中,有人提出了一种改进的EF类电压馈电多谐振逆变器,用于85-100 kHz频率范围的WPT应用。代替无限输入扼流电感器,谐振电感器用于降低损耗和功率密度。使用无源钳位电路的E类逆变器将MOSFET两端的峰值电压应力降低了近60%。已经提出了一种简单而有效的设计程序来计算所提出的逆变器的各种分量值。使用MATLAB / SimPowerSystem对整个系统进行仿真以验证理论概念。建造并测试了500瓦原型,以验证仿真结果。逆变器在几乎完美的对准条件下表现出90%的效率,并且效率随着WPT线圈未对准而逐渐降低。所提出的逆变器在相当大的负载变化期间保持零电压开关(ZVS),并具有E类逆变器的所有固有优势。

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