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A battery cell balancing control scheme with minimum charge transfer

机译:具有最小电荷转移的电池平衡控制方案

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According to the analysis of the imbalance in series-connected lithium-ion batteries, the state-of-health (SOH) and the energy utilization is mainly influenced when the cells are fully charged or discharged. Therefore, balancing is not necessarily required all the time. In addition, the energy loss of the balancing system is closely related to the charge transfer among different cells. This paper proposes an active balancing control scheme that utilizes the required charge of each cell as the balancing reference. With the scheme, the charge transfer during the balancing process can be minimized so that the energy loss can be reduced and the balance can be achieved when the cells are fully charged or discharged, which not only improves the battery lifetime but also increases the available energy. The proposed control is applied in a balancing system based on the direct cell-to-cell architecture and bi-directional buck/boost converter. Experimental results have verified the effectiveness of the proposed control.
机译:根据对串联连接的锂离子电池不平衡的分析,当电池充满电或放电时,健康状态(SOH)和能量利用率主要受到影响。因此,不一定总是需要平衡。另外,平衡系统的能量损失与不同电池之间的电荷转移密切相关。本文提出了一种主动平衡控制方案,该方案利用每个单元的所需电量作为平衡参考。利用该方案,可以使平衡过程中的电荷转移最小化,从而可以减少能量损失,并且当电池充满电或放电时可以达到平衡,这不仅延长了电池寿命,而且增加了可用能量。 。所提出的控制应用于基于直接电池到电池架构和双向降压/升压转换器的平衡系统中。实验结果证明了所提出的控制方法的有效性。

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