基于混合模式无端接行为模型的sic基功率变换器差模EMI发射预测

Bingyao Sun, R. Burgos, Xuning Zhang, D. Boroyevich
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引用次数: 14

摘要

由于快开关速度器件产生的高电磁干扰(EMI)噪声,了解系统中EMI噪声的产生和传播以及设计有效的EMI滤波器至关重要。电磁干扰行为模型已被证实是预测共模(CM)和差模(DM)电磁干扰噪声和帮助设计电磁干扰滤波器的有效工具。然而,这些模型不能预测交叉耦合DM和CM噪声的影响,当工作在高开关频率时,这种噪声更有可能存在。据此,本文解释了逆变器系统中噪声产生和传播的交叉耦合效应。考虑混合调制效应,提出了一种捕捉输入直流端DM噪声的混合模式无端行为模型。在三相SiC MOSFET逆变器上进行的实验验证了该模型的精度为30 MHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differential-mode EMI emission prediction of SiC-based power converters using a mixed-mode unterminated behavioral model
With the high electromagnetic interference (EMI) noise generated by fast-switching-speed devices, it is crucial to learn about EMI noise generation and propagation in the systems and design effective EMI filters. EMI behavioral models have been verified as an effective tool to predict common-mode (CM) and differential-mode (DM) EMI noise and aid in EMI filter design. However, these models cannot predict the effect of the cross-coupled DM and CM noise, which is more likely to be present when operating at a high switching frequency. Accordingly, this paper explains the cross-coupled effect that noise generation and propagation have in an inverter system. A mix-mode unterminated behavioral model is proposed to capture the DM noise at the input DC terminals considering the mixed CM effect. The model accuracy is verified to 30 MHz in experiments carried out on a three-phase SiC MOSFET inverter.
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