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Voltage-SOC balancing control scheme for series-connected lithium-ion battery packs

机译:串联锂离子电池组的电压-SOC平衡控制方案

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摘要

The basis for determining whether the cell needs to be balanced is generally the voltage or SOC (state of charge), the voltage balancing control scheme is simple but performs poorly, the SOC balancing control scheme performs well but needs to estimate the SOC of all cells. Based on the analysis why existing naive approaches are not effective for voltage balancing control scheme, the voltage-SOC balancing control scheme is proposed, which has the advantages of simple of voltage balancing control scheme and well performance of SOC balancing control scheme. By utilizing the difference of voltage of cell and SOC of battery pack, the difference of SOC between two cells can be obtained indirectly, and the transition from voltage balancing control scheme to SOC balancing control scheme can be realized, while the advantages of voltage balancing control scheme and SOC balancing control scheme are retained. The 4 experiments designed show that the estimated errors of the difference between the SOCs of the two cells are 0.24%, 5.3%, -5%, and 0.8%, respectively, which proves the excellent performance of voltage-SOC balancing control scheme.
机译:确定电池是否需要平衡的基础通常是电压或SOC(充电状态),电压平衡控制方案简单但性能较差,SOC平衡控制方案性能良好,但需要估算所有电池的SOC 。在分析现有幼稚方法对电压平衡控制方案无效的基础上,提出了电压-SOC平衡控制方案,具有电压平衡控制方案简单,SOC平衡控制方案性能好的优点。利用电池电压与电池组SOC的差异,可以间接求得两个电池之间的SOC的差异,可以实现从电压平衡控制方案向SOC平衡控制方案的过渡,同时具有电压平衡控制的优点保留了方案和SOC平衡控制方案。设计的4个实验表明,两个电池的SOC之间的差异估计误差分别为0.24%,5.3%,-5%和0.8%,证明了电压-SOC平衡控制方案的出色性能。

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