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Optimal design of high frequency H-bridge inverter for wireless power transfer systems in EV applications

机译:电动汽车无线电力传输系统中高频H桥逆变器的优化设计

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With the emergence of Wireless Power Transfer (WPT) systems in electric vehicle (EV) applications, variety of power electronics converters topologies are implemented. The proper converter design is crucial in these application to be able to handle the high power and frequency operation. This paper presents an optimum design of 40 kHz single-phase H-bridge resonance inverter for wireless EV's charging system. The power and signal components selection and design are discussed in details. Also, the printed circuit board (PCB) layout design is optimized for reducing the electromagnetic interference (EMI) to comply the standard level. Moreover, snubber circuit is designed and added to each inverter leg to minimize the ringing issue. The proposed design includes voltage and current protection for both the DC and AC sides. Both the power switched and the driving circuits are embedded in one PCB. The proposed design is tested under different control and operating conditions and compared with a random design. Finally, the proposed inverter is introduced in a bidirectional inductive wireless power transfer (BIWPT) system prototype and examined by means of simulation and experimental tests. The results shows effective improvements for the proposed design.
机译:随着电动汽车(EV)应用中无线功率传输(WPT)系统的出现,实现了各种功率电子转换器拓扑。在这些应用中,正确的转换器设计对于处理高功率和高频率操作至关重要。本文提出了一种用于无线电动汽车充电系统的40 kHz单相H桥谐振逆变器的优化设计。详细讨论了电源和信号组件的选择和设计。此外,印刷电路板(PCB)布局设计也经过优化,可减少电磁干扰(EMI)达到标准水平。此外,设计了缓冲电路并将其添加到每个逆变器支路,以最大程度地减少振铃问题。提议的设计包括针对直流侧和交流侧的电压和电流保护。电源开关和驱动电路都嵌入在一块PCB中。所提出的设计在不同的控制和操作条件下进行了测试,并与随机设计进行了比较。最后,将提出的逆变器引入双向感应无线电力传输(BIWPT)系统原型中,并通过仿真和实验测试进行了检验。结果显示了对拟议设计的有效改进。

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