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Modeling and control of a dual cell link for battery-balancing auxiliary power modules

机译:电池平衡辅助电源模块的双电池链路的建模与控制

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This paper focuses on the design of current controllers of a half-full bridge balancing link for a battery-balancing auxiliary power module. The fundamental concept of the converter is explained, e.g. phase shift control. For steady-state operation while the cells are unbalanced, a duty cycle adjustment is introduced to make inductor VA balanced. The proposed topology offers four typical balancing modes, including cells to auxiliary, cell to cell and auxiliary, auxiliary to cells, and cell to cell. They are realized by properly controlling leakage inductor current and output power from the half-full bridge. The average model of the topology and the linearized output power characteristic are derived to help choose the current controller gains. High-fidelity validation results are shown to verify the controller design and mode switching given the cell current demands.
机译:本文侧重于电池平衡辅助电源模块的半完全桥梁平衡链路的电流控制器的设计。解释了转换器的基本概念,例如,相移控制。对于稳态操作而电池不平衡,引入占空比调整以使电感器VA平衡。所提出的拓扑提供了四种典型的平衡模式,包括细胞到辅助,细胞和辅助细胞和辅助细胞和细胞的细胞。通过适当地控制来自半满桥的泄漏电感器电流和输出功率来实现它们。衍生拓扑和线性化输出功率特性的平均模型,以帮助选择当前的控制器增益。验证了高保真验证结果,以验证控制器设计和模式切换给定电池当前需求。

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