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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Novel Bidirectional Voltage Equalizer Based on Double Output Dual Switch Flyback Circuit
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Novel Bidirectional Voltage Equalizer Based on Double Output Dual Switch Flyback Circuit

机译:基于双输出双开关飞回电路的新型双向电压均衡器

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摘要

Voltage inconsistency occurs during charging and discharging of battery pack in series which affects its capacity and life if no measures are taken. A bidirectional equalizer based on dual switch flyback transformer is presented for making the voltage of lithium battery pack consistent efficiently. First, the transformer is taken as the carrier of energy transfer, and the forward and reverse working principle of the equalization circuit is analyzed. Second, according to the different direction of energy transfer, the corresponding equilibrium strategy is designed. Whether to stop equalization is judged by the maximum voltage difference between cells. Finally, a set of platforms containing 12 battery cells are built to perform equalization experiments. The results show that maximum voltage difference between the cells are less than 30 mV after the equalization which proved the feasibility of the proposed scheme. Compared with the existing mainstream equilibrium structures, the structure proposed in this paper has faster equilibrium speed and higher efficiency. (c) 2022 Institute of Electrical Engineers of Japan. Published by Wiley Periodicals LLC.
机译:电压不一致在电池组的充电和排放串联期间发生,如果没有采取措施,会影响其容量和寿命。提出了基于双开关飞回变压器的双向均衡器,以使锂电池组的电压有效地保持一致。首先,将变压器视为能量转移的载体,并分析了均衡电路的正向和反向工作原理。其次,根据能量转移的不同方向,设计了相应的平衡策略。是否停止均衡是由细胞之间的最大电压差来判断的。最后,构建了一组包含12个电池电池的平台以执行均衡实验。结果表明,在均衡后,细胞之间的最大电压差异小于30 mV,这证明了所提出的方案的可行性。与现有的主流平衡结构相比,本文提出的结构具有更快的平衡速度和更高的效率。 (c)2022日本电气工程师研究所。由Wiley Wendericals LLC出版。

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