High efficiency buck-boost converter with reduced average inductor current (RAIC) technique

Ping-Ching Huang, Wei-Quan Wu, Hsin-Hsin Ho, Ke-Horng Chen, G. Ma
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引用次数: 13

Abstract

This paper presents a buck-boost converter with high-efficiency and smooth-transition to extend the battery life of portable devices. The new control topology minimizes the switching and conduction losses at the same time even four switches are used. Therefore, over a wide input voltage range, the proposed buck-boost converter with minimum switching loss like the buck or boost converter can reduce the conduction loss through the use of the reduced average inductor current (RAIC) level. Especially, the converter offers good line/load regulation and thus provides a smooth and stable output voltage without being affected by the decreasing battery voltage. Experimental results show that the output voltage is regulated for the whole battery life time and the output transition is very smooth during mode transition. Besides, the output voltage ripple and the average inductor current are effectively minimized by the proposed control scheme. The peak efficiency is 97% and output voltage ripple is reduced from 100mV to within 10mV.
采用降低平均电感电流(RAIC)技术的高效降压-升压变换器
本文提出了一种高效、平稳过渡的降压升压变换器,以延长便携式设备的电池寿命。新的控制拓扑结构使开关和导通损失最小化,同时即使使用四个开关。因此,在较宽的输入电压范围内,与降压或升压变换器一样具有最小开关损耗的降压-升压变换器可以通过使用降低的平均电感电流(RAIC)水平来降低导通损耗。特别是,转换器提供了良好的线路/负载调节,从而提供了一个平稳和稳定的输出电压,而不受电池电压下降的影响。实验结果表明,在整个电池寿命期间,输出电压是可调节的,并且在模式转换过程中输出转换非常平稳。此外,该控制方案有效地减小了输出电压纹波和平均电感电流。峰值效率为97%,输出电压纹波从100mV降低到10mV以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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