一种高效的隔离双向半桥谐振DC/DC变换器

Xiangwu Yan, Huichao Zhao, Qingli Zhang, Hongchang Liu, Zheng Lv
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引用次数: 12

摘要

面对全球环境快速变化、能源危机和节能减排的压力日益增大,对具有高效率、体积小、动态性能好和低成本等优点的双向DC/DC变换器(BDC)的技术需求日益增加。分析了传统隔离型双向DC/DC变换器的优缺点,在此基础上提出了一种具有对称拓扑结构的隔离型、高效率、高功率密度LLC谐振型双向DC/DC变换器。通过研究LLC谐振电路参数的计算方法,设计了5kW、580V/400V的BDC样机。在Cadence Pspice环境中建立了相应的等效电路模型。仿真结果验证了对称拓扑双向DC/DC变换器和谐振电路元件参数计算方法的正确性,并表明在整个负载范围内,BDC可以实现谐振侧电源开关的ZVS和整流侧二极管的ZCS。该变换器降低了损耗和电磁干扰,提高了效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An efficient isolated bi-directional half bridge resonant DC/DC converter
Facing the rising pressure of global environment changing rapidly, energy crisis and energy saving, the technology needs of the bi-directional DC/DC converter (BDC) which has the advantages of high efficiency, small size, good dynamic performance and low cost are increasing. This paper analyzes the advantages and disadvantages of the traditional isolated bi-directional DC/DC converters, furthermore, an isolated, high efficiency, high power density LLC resonant bi-directional DC/DC converter with symmetrical topology is proposed. Through studying the calculation method of the LLC resonant circuit parameters, a 5kW, 580V/400V BDC prototype model is designed. The corresponding equivalent circuit model is established in the Cadence Pspice environment. Simulation results verify the correctness of the bi-directional DC/DC converter with symmetric topology and the calculation method of resonant circuit component parameters and show that the BDC can realize ZVS for the power switches on the resonance side and realize ZCS for the rectifier diodes on the rectifier side in the whole load range. The converter reduces loss and electromagnetic interference (EMI) and improves efficiency.
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