Automatic current sharing mechanism in the series capacitor buck converter

P. Shenoy, Orlando Lazaro, Mike Amaro, R. Ramani, W. Wiktor, B. Lynch, J. Khayat
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引用次数: 38

Abstract

This study examines the mechanism and effectiveness of current sharing in a multiphase, series capacitor buck converter. The automatic current sharing mechanism is inherent to the series capacitor buck topology and uniquely utilizes its series capacitor. Unlike conventional multiphase buck converters, current sharing is achieved without any current sensing circuits or added external control loops. Analysis of the automatic current sharing mechanism explains its robustness to variations in inductance, dc resistance (DCR), and temperature. Unequal control switch on-times are found to have measurable impact on sharing accuracy. Results from a two-phase, 12 V input, 10 A output hardware prototype demonstrate the simple, highly accurate current sharing capabilities of the series capacitor buck converter. Experimental results for unequal on-times exhibit unmatched average currents but stable operation with a dc offset.
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串联电容降压变换器中的自动共流机构
本研究探讨了多相串联电容降压变换器的电流共享机制和有效性。自动电流共享机制是串联电容降压拓扑所固有的,它独特地利用了串联电容。与传统的多相降压变换器不同,电流共享不需要任何电流传感电路或添加外部控制回路。通过对电流共享机制的分析,可以解释其对电感、直流电阻(DCR)和温度变化的鲁棒性。不均匀控制开关接通时间对共享精度有显著影响。两相,输入12v,输出10a硬件样机的结果表明,串联电容降压变换器具有简单,高精度的电流共享能力。不相等导通时间的实验结果显示不匹配的平均电流,但稳定的工作与直流偏移。
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