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Coupled Inductor Design Methodology to Improve Energy Transfer Efficiency in Active Cell Balancing Circuit using Multi-Winding Coupled Inductor

机译:耦合电感器设计方法,以提高使用多绕组耦合电感器有源电池平衡电路中的能量传递效率

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This paper proposes a coupled inductor design of a cell balancing circuit using an inductor coupled by multiple windings. The coupling coefficient of the multiwinding inductor and the output capacitance of MOSFETs affect the energy transfer efficiency of the cell balancing operation. During the balancing operation, the multi-winding inductor stores the energy in the specific source cell and subsequently transfers this energy to the target cell. However, the leakage inductance of the multi-winding inductor and the output capacitance of the MOSFET induce unintended energy transfers to other non-target cells, thereby degrading the transfer efficiency of the balancing current in each cell balancing operation. In this paper, the impact of the energy transfer efficiency deterioration is analyzed, and the design methodology of the multi-winding inductor is proposed to improve the energy transfer efficiency. The improvements of the proposed method are verified by experiments with a 1 W prototype cell balancing circuit.
机译:本文提出了使用由多个绕组耦合电感器的单元平衡电路的耦合电感器的设计。所述多绕组电感器的耦合系数和MOSFET的输出电容影响电池平衡操作的能量传递效率。在平衡操作中,多绕组电感器中存储的特定源小区中的能量,并随后传送该能量到目标小区。然而,多绕组电感器的漏电感和MOSFET的输出电容诱导不期望的能量转移到其它非靶细胞,从而降低了平衡电流的传递效率的每个单电池平衡操作。在本文中,能量传递效率恶化的影响进行了分析,所述多绕组电感器的设计方法,提出了以提高能量传递效率。所提出的方法的改进是通过实验用1个原型电池平衡电路验证。

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