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A Cell-to-Cell Equalizer Based on Three-Resonant-State Switched-Capacitor Converters for Series-Connected Battery Strings

机译:基于三谐振状态开关电容器转换器的串联电池串的单元间均衡器

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Due to the low cost, small size, and ease of control, the switched-capacitor (SC) battery equalizers are promising among active balancing methods. However, it is difficult to achieve the full cell equalization for the SC equalizers due to the inevitable voltage drops across Metal-Oxide-Semiconductor Field Effect Transistor (MOSFET) switches. Moreover, when the voltage gap among cells is larger, the balancing efficiency is lower, while the balancing speed becomes slower as the voltage gap gets smaller. In order to soften these downsides, this paper proposes a cell-to-cell battery equalization topology with zero-current switching (ZCS) and zero-voltage gap (ZVG) among cells based on three-resonant-state SC converters. Based on the conventional inductor-capacitor (LC) converter, an additional resonant path is built to release the charge of the capacitor into the inductor in each switching cycle, which lays the foundations for obtaining ZVG among cells, improves the balancing efficiency at a large voltage gap, and increases the balancing speed at a small voltage gap. A four-lithium-ion-cell prototype is applied to validate the theoretical analysis. Experiment results demonstrate that the proposed topology has good equalization performances with fast equalization, ZCS, and ZVG among cells.
机译:由于成本低,尺寸小和易于控制,因此,在有源平衡方法中,开关电容器(SC)电池均衡器很有希望。但是,由于金属氧化物半导体场效应晶体管(MOSFET)开关上不可避免的电压降,很难实现SC均衡器的全单元均衡。此外,当单元之间的电压间隙较大时,平衡效率较低,而随着电压间隙变小,平衡速度变慢。为了缓解这些缺点,本文提出了一种基于三谐振态SC转换器的电池间零电流开关(ZCS)和零电压间隙(ZVG)的电池间均衡拓扑。基于常规的电感电容(LC)转换器,构建了一条额外的谐振路径,以在每个开关周期中将电容器的电荷释放到电感器中,这为在单电池之间获得ZVG奠定了基础,并在很大程度上提高了平衡效率。电压间隙,并在较小的电压间隙下提高平衡速度。应用四锂离子电池原型验证理论分析。实验结果表明,所提出的拓扑具有良好的均衡性能,在小区之间具有快速均衡,ZCS和ZVG的特性。

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