基于耦合电感的高电压比双向变换器的实际设计考虑

S. Hasan, Jinjun Liu, F. Liu, Haodong Zhang
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引用次数: 2

摘要

本文对基于耦合电感的高电压比非隔离双向变换器的理论和实际设计进行了研究。耦合电感可以看作是具有不同单独特性的绕组的抽头电感,它可以用理想变压器来建模。通常基于变压器的DC-DC拓扑被用于传统的双向DC-DC变换器,因为变压器的自然属性提供了隔离的好处。此外,还实现了零电压开关(ZVS)和零电流开关(ZCS)等软开关技术,通过降低开关损耗来提高效率。不幸的是,在基于变压器的拓扑中使用超过4个开关以及几个无源元件会增加成本,并使拓扑在工作和控制方面更加复杂。本文研究了一种基于耦合电感的双向DC-DC目标变换器,重点介绍了耦合电感的基本原理,包括其物理特性、理想变压器的建模以及在变压器模式下工作以获得高电压比。本文还给出了一个基于耦合电感的升压变换器的仿真结果,以便对耦合电感的特征波形有一个基本的了解。给出了80瓦目标变换器样机的实验结果,验证了耦合电感器在变压器模式下成功地实现了所需的高电压比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Practical design considerations for coupled inductor based bi-directional Converters of high voltage ratio
This work presents a study on the theoretical and practical design of Coupled Inductor based Non-Isolated bi-directional converters of high voltage ratio. Coupled Inductor can be regarded as a tapped Inductor having windings with different individual characteristics and it can be modeled in terms of an ideal transformer. Usually transformer based DC-DC topologies are utilized in conventional bi-directional DC-DC converters because of the natural property of a transformer to provide the benefit of isolation. Moreover soft switching techniques such as Zero-voltage switching (ZVS) and Zero-current switching (ZCS) are achieved to increase efficiency by decreasing the switching losses. Unfortunately the use of more than 4 switches along with several passive components in transformer based topologies increases the costs and makes the topology more complex in terms of working and control. In this work a coupled inductor based bi-directional DC-DC target converter is studied emphasizing the basics of Coupled Inductor including its physics, it modeling in terms of an ideal transformer and its operation in the transformer mode to get a high Voltage ratio. Simulation results of a Coupled Inductor based boost converter are also given for basic understanding of the characteristic waveforms of a Coupled Inductor. Experiment results of an 80 Watt prototype of the target converter are given to verify the successful Coupled Inductor operation in the transformer mode to achieve the required high voltage ratio.
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