A Symmetric Multi-mode Battery Equalizer Based on Bidirectional DC-DC Converter for Series-Connected Lithiumion Cells

Hongrui Liu, Xudong Yang, W. Liu, Ziheng Lin, Hairui Li, Xiangyang Wei
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Abstract

The equalizer with the concentration structure has good compactness and low cost, making it a good choice for the occasion that requires high energy density. However, it is ubiquitous that the performance of the equalizer with the concentration structure in the balancing speed and accuracy is poor. To solve the problem of poor balancing speed and accuracy in the traditional equalizer with the concentration structure, a multi-state and energy path equalizer is proposed, which can realize the inside-to-inside (I2I) charge transfer, outside-to-inside(O2I) and the inside-to-outside (I2O) charge transfer. It allows the proposed equalizer to achieve a faster balancing speed and higher accuracy. A model with four lithium-ion battery cells is built in the Simulink after the rational analysis of the working mode and principle of the proposed equalizer. The results show that the proposed scheme exhibits outstanding balancing performance in speed and accuracy.
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基于双向DC-DC变换器的锂离子电池串联对称多模均衡器
该均衡器具有紧凑性好、成本低的特点,是能量密度要求高的场合的理想选择。然而,集中式结构均衡器在平衡速度和精度上的表现普遍较差。针对传统集中式均衡器平衡速度和精度差的问题,提出了一种多态能量路径均衡器,实现了由内到内(I2I)、由外到内(O2I)和由内到外(I2O)的电荷转移。它允许所提出的均衡器实现更快的平衡速度和更高的精度。在对该均衡器的工作方式和原理进行合理分析后,在Simulink中建立了4个锂离子电池的模型。结果表明,该方案在速度和精度上具有良好的平衡性能。
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