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Cell SoC Balancing Using a Cascaded Full-Bridge Multilevel Converter in Battery Energy Storage Systems

机译:Cell SoC平衡使用电池储能系统中的级联全桥多电平转换器

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摘要

This paper presents a method for achieving individual electrochemical cell balancing by using a cascaded full bridge multilevel converter where a single electrochemical cell is connected to each converter module. As a result, balancing at cell level is possible without additional circuitry, making this topology ideal for long service life grid storage and applications using second-life cells where the cells are inherently poorly matched. In order to estimate the relative state of charge between cells, the control flexibility of the multilevel converter is used to remove each cell from the current path without interrupting the operation of the system. This process eliminates the effect of the internal cell resistance and fast transient electrochemical phenomena and therefore the measured voltage serves as a high quality ‘pseudo open circuit’ voltage measurement. The proposed balancing strategy is validated using a 25 level cascaded full bridge multilevel converter prototype for the individual balancing of twelve lithium polymer cells, during consecutive charging and discharging cycles. Successful balancing to within 5 mV of open circuit voltage is observed between cells with 45% difference in nominal capacity and 55% initial state of charge variation.
机译:本文介绍了一种通过使用级联的全桥多级转换器来实现各个电化学电池平衡的方法,其中单个电化学电池连接到每个转换器模块。结果,在没有额外电路的情况下,可以在电池电平的平衡,使得这种拓扑非常适合使用电池本质上匹配的第二生命细胞的长使用寿命网格存储和应用。为了估计电池之间的相对电荷状态,多级转换器的控制柔性用于从电流路径上移除每个单元而不中断系统的操作。该过程消除了内部电池电阻和快速瞬态电化学现象的影响,因此测量的电压用作高质量的“伪开路”电压测量。使用25级级联的全桥多级转换器原型来验证所提出的平衡策略,用于在连续充电和放电循环期间为12个锂聚合物电池的单独平衡进行单独平衡。在具有45%的标称容量差异和55%的充电变化状态下,在具有45%差异的电池之间观察到成功平衡。

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