兆赫频率隔离谐振dc-dc变换器采用阻抗控制网络实现高效率大范围工作

Ashish Kumar, K. Afridi
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引用次数: 21

摘要

本文介绍了一种基于阻抗控制网络(ICN)结构的新型隔离谐振dc-dc变换器拓扑结构。这种新型变换器通过在非常宽的工作范围内实现零电压开关(ZVS)和近零电流开关(ZCS)来保持非常高的效率。额外的性能增强是通过一种新的设计方法,最大限度地减少开关和传导损失。该ICN变换器实现采用全桥同步整流,非常适合低输出电压和高输出电流应用。构建并测试了一个550w, 1mhz的ICN原型转换器,设计工作电压范围为36v至60v,输出电压范围为34v至55v,输出功率范围为10:1。原型ICN变换器实现了97.6%的峰值效率,在34 V输出电压下,在接近2:1的输入电压范围内保持了大于96.5%的全功率效率,在整个输入输出电压范围内保持了95.3%以上的全功率效率。由于使用突发模式控制,在整个输入和输出电压范围内,在10:1的输出功率范围内,效率也保持在93.6%以上。
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Megahertz-frequency isolated resonant dc-dc converter using impedance control network for high-efficiency wide-range operation
This paper introduces a new isolated resonant dc-dc converter topology based on the recently proposed impedance control network (ICN) converter architecture. This new converter maintains very high efficiency by achieving zero voltage switching (ZVS) and near zero current switching (ZCS) across a very wide operating range. Additional performance enhancement is achieved through a new design methodology that minimizes switching and conduction losses. This ICN converter implementation incorporates full-bridge synchronous rectification and is well-suited for low output voltage and high output current applications. A prototype 550 W, 1 MHz ICN converter designed to operate over an input voltage range of 36 V to 60 V, an output voltage range of 34 V to 55 V, and a 10:1 output power range is built and tested. The prototyped ICN converter achieves a peak efficiency of 97.6%, maintains full power efficiency greater than 96.5% at 34 V output voltage across the nearly 2:1 input voltage range, and maintains full power efficiency above 95.3% across its full input and output voltage range. It also maintains efficiency above 93.6% over a 10:1 output power range across its full input and output voltage range owing to the use of burst-mode control.
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