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Conducted EMI Reduction in Power Converters by Means of Periodic Switching Frequency Modulation

机译:通过周期性开关频率调制降低功率转换器中的EMI

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Spread spectrum clock generation techniques were originally developed to reduce electromagnetic interference (EMI) in communications and microprocessor systems working in the range of hundreds of megahertz. Nowadays, the switching frequency of power converters has been increasing up to values that make worthy the application of such switching frequency modulation techniques to reduce EMI emissions in power converters. Although random modulations have been applied before to power converters, periodic patterns can provide some advantages. First, theoretical principles of frequency modulation using three periodic patterns for the modulating function are presented. The influence of some important modulation parameters on the EMI reduction is analyzed and some considerations about the EMI filters design are also presented. The effectiveness of such methods in terms of EMI reduction is demonstrated theoretically and confirmed with experimental results obtained from tests carried out on two converters. The first one is a 2.5 W buck converter that can be switched up to 1 MHz and the second one is a 600 W boost converter switching at 40 kHz. In both cases, attenuations obtained in conducted EMI are evaluated. Finally, special attention has been paid to input current and output voltage ripple in order to evaluate possible undesired side-effects produced by this technique.
机译:最初开发扩频时钟产生技术是为了减少工作在数百兆赫兹范围内的通信和微处理器系统中的电磁干扰(EMI)。如今,功率转换器的开关频率一直在增加,使其值值得应用这种开关频率调制技术来减少功率转换器中的EMI辐射。尽管之前已经将随机调制应用于功率转换器,但是周期性模式可以提供一些优势。首先,介绍了使用三个周期性模式进行调制功能的频率调制的理论原理。分析了一些重要的调制参数对降低EMI的影响,并提出了有关EMI滤波器设计的一些注意事项。理论上证明了这种方法在降低EMI方面的有效性,并通过在两个转换器上进行的测试获得的实验结果得到了证实。第一个是可以切换至1 MHz的2.5 W降压转换器,第二个是在40 kHz时切换的600 W升压转换器。在这两种情况下,都要评估在传导EMI中获得的衰减。最后,已经特别注意输入电流和输出电压纹波,以评估此技术可能产生的不良副作用。

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