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首页> 外文期刊>Power Electronics, IET >Adaptive frequency adjustment technique in current mode DC–DC converters for input voltage range extension
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Adaptive frequency adjustment technique in current mode DC–DC converters for input voltage range extension

机译:电流模式DC-DC转换器中的自适应频率调整技术,可扩展输入电压范围

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摘要

This study presents a switching frequency adjustment technique that helps widen the input voltage range of a current mode DC-DC converter. Conventional current-mode switching converters suffer the minimum on/off time restrictions that limit the input-to-output conversion ratio. This work introduces an additional regulation loop on top of an existing converter that regulates the switching period when the minimum on/off time limit is approached. Compared with a converter with fixed switching frequency, the proposed approach allows the free-running switching to be set without being limited by the minimum on/off time. A boost topology with output voltage of 24 V was built based on the proposed approach, and the measured valid input voltage range was extended from 8-16 to 3-21 V by the proposed scheme under 1 MHz preset frequency. Since the slope-compensation current, the inductor size, and the output capacitor are all optimised at 1 MHz and is not limited by the minimum on/off time which may lower the switching frequency of a conventional converter down to 450 kHz, the measured maximum available output current and the typical output voltage ripple under 12 V input achieved 1.57 A and 57 mV, respectively.
机译:这项研究提出了一种开关频率调节技术,该技术有助于扩大电流模式DC-DC转换器的输入电压范围。常规电流模式开关转换器遭受最小的导通/关断时间限制,从而限制了输入输出转换比。这项工作在现有转换器的顶部引入了一个额外的调节环路,当接近最小导通/截止时间限制时,它可以调节开关周期。与具有固定开关频率的转换器相比,所提出的方法允许设置自由运行开关,而不受最小接通/断开时间的限制。基于提出的方法,构建了输出电压为24 V的升压拓扑,通过该方案在1 MHz预设频率下,将测得的有效输入电压范围从8-16 V扩展到3-21V。由于斜率补偿电流,电感器尺寸和输出电容器均在1 MHz时进行了优化,因此不受最小开/关时间的限制,这可以将常规转换器的开关频率降低至450 kHz(测量的最大值) 12 V输入下的可用输出电流和典型输出电压纹波分别达到1.57 A和57 mV。

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