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Switching pattern of a modular voltage balancing circuit for battery cells

机译:用于电池单元的模块化电压平衡电路的开关模式

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Switching patterns are described for balancing the voltages of series connected Li-ion polymer batteries using non-dissipative cascaded modular power electronics. A balancing circuit is connected to two battery cells and consists of an asymmetrical half-bridge and a high frequency transformer. This reduces the number of switches and diodes to an average of one per battery. A balancing circuit or module can balance the voltage of two batteries by using two magnetically coupled windings connected to the centre tap of the two batteries: intra-bridge voltage balancing. Each module is coupled to adjacent modules by connecting transformer windings. Two fundamental control methods are described for transferring electrical charge between the batteries in adjacent modules: inter-bridge voltage balancing. Both control methods, “2-switch flyback control” and “phase-shifted control”, assume that each module determines its own switching pattern by monitoring the dc voltages in each of its adjacent modules. The relative merits of both controllers are described. Simulated and experimental results are presented for both controllers to validate the charge transfer methods used.
机译:描述了使用非耗散级联模块化电力电子设备平衡串联连接的Li离子聚合物电池的电压的开关图案。平衡电路连接到两个电池单元,并由不对称的半桥和高频变压器组成。这将开关和二极管的数量减少到每个电池的平均值。平衡电路或模块可以通过使用连接到两个电池的中心抽头的两个磁耦合绕组来平衡两节电池的电压:桥内电压平衡。每个模块通过连接变压器绕组耦合到相邻模块。描述了两个基本控制方法,用于在相邻模块中的电池之间传输电荷:桥间电压平衡。控制方法,“2-Switch反激控制”和“相移控制”,假设每个模块通过监视其每个相邻模块中的DC电压来确定其自己的切换模式。描述了两个控制器的相对优点。为两个控制器提供了模拟和实验结果,以验证使用的电荷转移方法。

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