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Modeling and Experimental Assessment of the EMI Characteristics of Switching Converters With Power Semiconductor Filters

机译:功率半导体滤波器的开关变换器的EMI特性建模与实验评估

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摘要

An input filtering technology named "power semiconductor filter (PSF)" has been proposed recently. Its operating principle is based on using a series pass device (SPD) to profile the wave shape and magnitude of the input current of converters. The voltage across the SPD is regulated around the "knee point" of the current-voltage characteristic of the SPD to minimize the power dissipation of the SPD. This paper reports the conducted electromagnetic interference (EMI) performance of the converters with the PSF. To suppress differential-mode (DM) EMI, a fast current regulation circuit is proposed to tightly regulate the current through the SPD. To suppress common-mode (CM) EMI, a single CM noise bypass capacitor is proposed. Detailed mathematical models for describing the frequency response of the SPD and main components in the driving network are formulated. A set of selection guidelines for the components will be given. The derived models will be validated by comparing the theoretical prediction with the measurement results of a 100 W, 90-264 Vac LED driver using a buck-boost converter. Results reveal that the PSF reduces the DM noise level by 47.47dBV. The CM noise level is reduced by 21.4dBV with the bypass capacitor. An integrated circuit for the controller is illustrated to demonstrate the feasibility of reducing the form factor of the filtering section.
机译:最近已经提出了一种称为“功率半导体滤波器(PSF)”的输入滤波技术。其工作原理是基于使用串联调整器件(SPD)来分析转换器的输入电流的波形和幅度。在SPD的电流-电压特性的“拐点”附近调节SPD两端的电压,以最大程度地减小SPD的功耗。本文报告了带有PSF的转换器的传导电磁干扰(EMI)性能。为了抑制差模(DM)EMI,提出了一种快速电流调节电路来严格调节通过SPD的电流。为了抑制共模(CM)EMI,提出了一个CM噪声旁路电容器。制定了详细的数学模型来描述SPD和驱动网络中主要组件的频率响应。将给出一组组件的选择准则。通过将理论预测与使用降压-升压转换器的100 W,90-264 Vac LED驱动器的测量结果进行比较,可以验证派生的模型。结果表明,PSF将DM噪声水平降低了47.47dBV。使用旁路电容器可使CM噪声水平降低21.4dBV。示出了用于控制器的集成电路,以说明减小滤波部分的形状因数的可行性。

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