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Electromagnetic interference on analog-to-digital converters from high-power wireless power transfer system for automotive charger

机译:用于汽车充电器大型高功率无线电力传输系统的模数转换器电磁干扰

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Wireless power transfer (WPT) technologies have been actively studied for electric vehicle (EV) battery charging applications. Electromagnetic radiated emissions from high-power WPT system are substantial, and its effects on an analog circuits cannot be ignored. In this paper, we investigated the electromagnetic interference (EMI) on analog-to-digital converters (ADCs) from high-power WPT system for the automotive charger. A 3-kW-class high-power WPT system for compact EV operating at 20 kHz was designed and validated via simulation results. An ADC chip was designed to analyze the effects of EMI from high power WPT system. Based on simulation results, we verified that the performance degradation of the ADC connected through a cable due to the coupled noise from high power WPT system.
机译:用于电动车辆(EV)电池充电应用,积极研究无线电力传输(WPT)技术。来自大功率WPT系统的电磁辐射发射很大,并且其对模拟电路的影响不能忽视。在本文中,我们研究了从高功率WPT系统进行了用于汽车充电器的模数转换器(ADC)的电磁干扰(EMI)。通过仿真结果设计和验证,设计并验证了3千瓦级大功率WPT系统,用于20 kHz的紧凑型eV。 ADC芯片旨在分析EMI从高功率WPT系统的影响。基于仿真结果,我们验证了由于高功率WPT系统的耦合噪声而通过电缆连接的ADC的性能下降。

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