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Impact of a Frequency Modulated Pulsewidth Modulation (PWM) Switching Converter on the Input Power System Quality

机译:调频脉宽调制(PWM)开关转换器对输入电源系统质量的影响

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In this paper, we show that a frequency modulated (FM) source of conducted emission has an adverse effect on a dc power system, although it is believed that frequency modulation of the interferer reduces such effects. Spread spectrum modulation is a commonly proposed technique of electromagnetic interference (EMI) reduction. It is often suggested that an FM pulsewidth modulation ramp be used in a voltage mode controlled dc-dc switching converter for reduction of conducted and radiated EMI. However, this paper shows that this technique is not as beneficial as is commonly perceived. The power quality standard MIL-STD 704, which is the origin of the EMI standard MIL-STD 461, puts restriction on several parameters other than the frequency spectrum of the disturbance, which is the only parameter that is specified in the EMI norms and tested in electromagnetic compatibility (EMC) tests. In this paper, we show that different interferers which are compatible to the same EMC limit, may affect the same power system differently. This difference is noticed if the other power quality parameters are considered. We have also mentioned that the actual benefit from spread spectrum modulation-based EMI reduction depends on the savings in printed circuit board (PCB) footprint area that we get by using a smaller filter. Through a numerical study, we have shown that such a method leads to only a negligible savings in PCB area in spite of significant EMI reduction. Moreover, this brings about a degraded performance on the other parameters that are not normally checked in EMI tests.
机译:在本文中,我们表明传导发射的调频(FM)源对直流电源系统有不利影响,尽管人们相信干扰源的调频会减少这种影响。扩频调制是减少电磁干扰(EMI)的一种常用技术。通常建议在电压模式控制的DC-DC开关转换器中使用FM脉宽调制斜坡,以降低传导和辐射EMI。但是,本文表明,此技术的好处不如通常所见。作为EMI标准MIL-STD 461的起源的电能质量标准MIL-STD 704限制了除干扰频谱以外的其他几个参数,干扰的频谱是EMI规范中指定并经过测试的唯一参数在电磁兼容性(EMC)测试中。在本文中,我们证明了与同一EMC限值兼容的不同干扰源可能会对同一电源系统产生不同的影响。如果考虑其他电能质量参数,则会注意到这种差异。我们还提到,基于扩频调制的EMI降低的实际收益取决于我们使用较小的滤波器所节省的印刷电路板(PCB)占地面积。通过数值研究,我们已经表明,尽管可以显着降低EMI,但这种方法只能节省可忽略的PCB面积。此外,这会导致在EMI测试中通常无法检查的其他参数上的性能下降。

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