基于多输入变压器的有源均衡拓扑研究

Yifan Chen
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引用次数: 1

摘要

T针对现有锂离子电池串联均衡电路结构复杂、开关元件众多、控制难度高的问题,提出了一种基于多输入变压器的有源均衡拓扑电路。均衡电路由电池模块、飞轮二极管、MOS晶体管和变压器组成。在对电池均衡拓扑进行分类和总结的基础上,分析研究了基于多输入变压器的有源均衡拓扑的原理。工作原理简单,使用设备少。应用Matlab/Simulink建立模型进行仿真分析,仿真结果表明开关频率和串联模块容量对均衡效果有影响。串联电容模块与单模块的均衡速率对比仿真表明,该拓扑对多模块具有更快的均衡速度。仿真结果验证了所提拓扑在不同模块间电压均衡中的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Active Equalization Topology Based on the Multi-input Transformer
T Targeted at the existing complex structure, numerous switching components and high control difficulty of existing equalization circuit of lithium-ion battery series, this paper proposes an active equalization topology circuit based on multi-input transformer. The equalization circuit is composed of battery module, fly-wheel diode, MOS transistor and transformer. Based on the classification and summary of battery equalization topology, this paper analyzes and studies the principle of active equalization topology based on multi-input transformers. The working principle is simple, with the use of fewer devices. Matlab/Simulink is applied to build a model for simulation analysis, and the simulation results show that switching frequency and series module capacity have an impact on the equalization effects. The equalization comparison rate simulation of the series capacitor module and the single module indicates that the proposed topology has a faster equalization speed for multiple modules. The simulation results verify the validity of the proposed topology in voltage equalization between different modules.
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