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A wireless power transfer system with a double-current rectifier for EVs

机译:具有用于电动汽车的双电流整流器的无线电力传输系统

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The secondary coil installed on an EV is required to be small in size, light in weight, and efficient in power transfer, as well as tolerant in lateral misalignment with a large air gap. Also, a wireless power transfer (WPT) system needs high power transfer. Both downsizing and high power transfer bring a thermal problem the secondary coil. This paper proposes a WPT system combining the so-called “series and series” connected resonant capacitors with a double-current rectifier to achieve a secondary coil current reduction that is an essential matter of the problem. The proposed WPT system employs solenoid coils that are superior to circular coils in terms of misalignment and flux-distribution performance. The secondary WPT coil rated at 18 A is designed, constructed, and tested to verify the principles of operation. The system efficiency is 90.0% at nominal air gap 135 mm without misalignment in output power 7 kW.
机译:要求安装在EV上的次级线圈尺寸小,重量轻,功率传输效率高,并且必须能容忍较大气隙的横向未对准情况。此外,无线功率传输(WPT)系统需要高功率传输。小型化和高功率传递都给次级线圈带来了散热问题。本文提出了一种WPT系统,该系统将所谓的“串联和串联”连接的谐振电容器与双电流整流器相结合,以实现次级线圈电流的减小,这是该问题的关键所在。提出的WPT系统采用的电磁线圈在失准和磁通分配性能方面均优于圆形线圈。设计,构造和测试了额定值为18 A的次级WPT线圈,以验证其工作原理。在135 mm标称气隙的情况下,系统效率为90.0%,而输出功率7 kW不失准。

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