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A new wireless EV charger using single switch ZVS resonant inverter with optimized power transfer and low-cost PFC

机译:使用单开关ZVS谐振逆变器的新型无线EV充电器,具有优化的功率传输和低成本PFC

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This paper deals with a cost effective IPT wireless EV battery charger which incorporates the simplest quasi-resonant soft switching pulse modulated inverter. In the first place, the operating principle of the single-ended high-frequency resonant inverter linked IPT DC-DC converter treated here is described. This two planar coupling coils type wireless resonant DC-DC converter can efficiently operate under a condition of ZVS transitions on the basis of the self-excited pulse processing scheme due to zero voltage detecting method of quasi-resonant capacitor voltage. In the second place, illustrated is a comparative study of wireless power transfer circuits. Power receiving circuit is optimized successfully from a viewpoint of transfer power. Furthermore a low-cost power-factor correction by active filtering is described herein. The waveform of the input current in pilot study of this wireless EV charger has very low harmonic distortion by the PFC control of the inverter and the design of the filter circuit parameters.
机译:本文讨论了一种具有成本效益的IPT无线EV电池充电器,该充电器结合了最简单的准谐振软开关脉冲调制逆变器。首先,描述在此处理的单端高频谐振逆变器链接的IPT DC-DC转换器的工作原理。由于准谐振电容器电压的零电压检测方法,这两个平面耦合线圈型无线谐振DC-DC转换器可以在基于自激脉冲处理方案的ZVS转换条件下有效地工作。其次,示出了对无线电力传输电路的比较研究。从传输功率的角度来看,成功地优化了受电电路。此外,本文描述了通过有源滤波的低成本功率因数校正。通过逆变器的PFC控制和滤波器电路参数的设计,此无线EV充电器的前期研究中的输入电流波形具有极低的谐波失真。

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