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Modulation Scheme for an Effective Increase in the Number of Levels of DC-DC Multi-Level Flying Capacitor Converters

机译:用于有效增加的DC-DC多级飞行电容转换器数量有效增加的调制方案

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This paper introduces a novel modulation scheme for dc-dc multi-level flying capacitor buck converters that effectively increases the number of converter levels. It is shown that, in general, an N-level flying capacitor converter can be split simultaneously into an N+1/2 and an N+3/2 level flying capacitor converter. This modulation scheme creates unequal differences between the flying capacitor voltages which can be used to reduce the voltage swing at the switching node and thus the size of the inductor. The voltage swing becomes equivalent to an N2+3/4 level converter for some conversion ratios. Additionally, this modulation scheme has passive flying capacitor voltage balancing, simplifying controller design. A 5-level flying capacitor converter was modulated to create a 3,4-level converter with the effective voltage swing of a 7-level converter. The functionality of this modulation scheme was confirmed with a 24V-to-9V, 45W 5-level buck converter confirming a 35% reduction in the inductor ripple and, thus, allowing for the equivalent inductor reduction.
机译:本文介绍了一种用于DC-DC多级飞行电容器降压转换器的新型调制方案,有效增加了转换器水平的数量。结果表明,通常,N级飞行电容器转换器可以同时分开于N + 1/2和N + 3/2电平飞行电容器转换器。该调制方案在飞行电容器电压之间产生不等的差异,该电容器电压可以用于减小开关节点处的电压摆动并因此用于减小电感器的尺寸。对于一些转换比率,电压摆幅变为等同于N2 + 3/4电平转换器。此外,该调制方案具有无源飞行电容电压平衡,简化控制器设计。调制5级飞电容器转换器以创建3,4级转换器,具有7级转换器的有效电压摆动。该调制方案的功能用24V-to-9V,45W 5级降压转换器确认,确认电感纹波中的35%降低,从而允许等效电感器减少。

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